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jftLVªh laö Mhö ,yö&33004@99 REGD. NO. D. L.-33004/99
vlk/kj.k
EXTRAORDINARY
Hkkx II—[k.M 3—mi&[k.M (ii)
PART II—Section 3—Sub-section (ii)
izkf/dkj ls izdkf'kr
PUBLISHED BY AUTHORITY
la- 1032] ubZ fnYyh] 'kqØokj] vçSy 29] 2016@oS'kk[k 9] 1938
No. 1032] NEW DELHI, FRIDAY, APRIL 29, 2016/VAISAKHA 9, 1938
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ddddkkkk----vvvvkkkk---- 1111555588889999(vvvv).—;Fkkla'k¨f/kr fons'k O;kikj (fodkl ,oa fofu;eu) vf/kfu;e] 1992 {,QVh (Mh,.Mvkj)
vf/kfu;e] 1992} dh /kkjk 5 ,oa /kkjk 14d }kjk çnŸk 'kfDr;¨a dk ç;¨x djrs gq, dsUnz ljdkj fofuÆn"V eky] lsokv¨a v©j
ç©|¨fxfd;¨a vFkkZr fo'ks"k jlk;u] vkx¢ZfuTe] inkFk¨±] midj.k rFkk ç©|¨fxfd;¨a (Ld¨esV) dh lwph ftls fnukad 14 ekpZ]
2013 dh vf/klwpuk la- 37 (vkjÃ&2012)@2009&2014 ds }kjk vf/klwfpr fd;k x;k Fkk rFkk fnukad 03 tqykÃ] 2013 dh
vf/klwpuk la- 26 (vkjÃ&2013)@2009&2014 ds }kjk la'k¨f/kr fd;k x;k Fkk] esa fuEufyf[kr la'k¨/ku djrh gS :
2- Ld¨esV Jsf.k;¨a esa la'k¨/ku fuEukuqlkj g¨axs%
dddd---- LLLLdddd¨¨¨¨eeeessVVssVV JJJJss..ss..kkkkhhhh 0000 vvvv©©©©jjjj mmmmllllddddss ss rrrrggggrrrr ççççffffooooffff""""VVVV;;;;¨¨¨¨aa aa ddddss ss ffffyyyy,,,, ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr ffffuuuuEEEEuuuukkkkuuuuqlqlqlqlkkkkjjjj ççççffffrrrrLLLLFFFFkkkkkkkkffffiiiirrrr ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk%%%%
**Js.kh 0 ukfHkdh; lkefxz;k¡] ukfHkdh; ls lacaf/kr vU; lkefxz;k¡] miLdj ,oa çkS|ksfxdh
0A fofgr inkFkZ
fVIi.kh : Js.kh 0A dh fdlh Hkh jsfM;kslfØ; lkexzh ij bu fu;eksa ds vfrfjä ijek.kq ÅtkZ vf/kfu;e
1962 ds rgr cus ijek.kq ÅtkZ ¼fofdj.k lja {k.k½ vf/kfu;e 2004 ds çko/kku vkSj ijek.kq ÅtkZ vf/kfu;e
1962 dh /kkjk&16 ds çko/kku Hkh ykxw gksaxs A
0A1 lzksr lkexzh
0A101 ç—fr esa ik;s tkus okys vkblksVksiksa ds feJ.k ;qä ;jw sfu;e A
0A102 vkblksVksi 235 esa vo{kf;r ;wjsfu;e A
0A103 Fkksfj;e
2099 GI/2016 (1)2 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
0A104 mijksä 0A 101]102 ;k 0A 103 esa fdlh Hkh lkexzh] /kkrq] feJkrq] jklk;fud ;kSfxd vFkok lkaæ.k
vFkok fdlh inkFkZ ds :i esa fofgr mijksä lkexzh A
0A105 mijksä esa ls dksbZ ,d vFkok ,dkf/kd enksa ls ;qä dksbZ vU; lkexzh A
uksV 1 : Jksr lkefxz;ksa esa ;jw sfu;e] Fkksfj;e v;Ld ;k lkaæ.k 'kkfey gSaA
uksV 2 : fuEufyf[kr enksa dh] dsoy xSj&ukfHkdh; xfrfof/k;ksa gsrq] ,d dSysaMj o"kZ ds varxrZ uhps
fofufnZ"V lhekvksa ls vuf/kd ek=k dk] fdlh ,d çkIrdrkZ ns'k dks fu;kZr ij fu;a=.k ugha gSA
d½ ;wjsfu;e ¼çk—frd vkblksVksiksa ds feJ.k ;qä½ 100 fdyksxzke
[k½ vo{kf;r ;wjsfu;e ¼ç—fr esa ik;s tkus okys ;jw sfu;e ls de Lrj ds 235 vkblksVksi esa vo{kf;r
;wjsfu;e½ 1000 fdyksxzke
x½ Fkksfj;e 1000 fdyksxzke
fVIi.kh 3: 0A1 fuEufyf[kr dks fu;af=r ugha djrk gS :&
i½ ;wjsfu;e vkSj Fkksfj;e v;Ld] [kfut lkaæ.k ;k vU; lkefxz;k¡ tks 300 Hkkx çfr nl yk[k
¼ppm½ ls de ;wjsfu;e ;k/ vkSj Fkksfj;e ;qä gSaA
ii½ vy‚; ¼feJkrq½ tks 5% ls de Fkksfj;e;qä gSa A
iii½ Fkksfj;e;qä mRikn] tks xSj&ukfHkdh; mi;ksx gsrq fofufeZr fd;s x;s gSaA
0A2 fo'ks"k fo[kaMuh; lkexzh
0A201 IywVksfu;e & 239
0A202 ;wjsfu;e & 233
0A203 vkblksVksi 235 vFkok 233 esa loa fnZ~/kr ;jw sfu;e
0A204 usIpwfu;e
0A205 mijksä esa ls fdlh ,d vFkok vf/kd enksa ls ;qä dksbZ lkexzh
0A206 ,slh dksbZ Hkh fo[kaMuh; lkexzh tks dsUæ ljdkj }kjk le;≤ ij fu/kkZfjr dh x;h gksA
rduhdh fVIi.kh :
ÞvkblksVksi 235 ;k 233 esa laof/kZr ;wjsfu;eß 'kCnin dk vFkZ vkblksVksi 235 ;k 233 ;k nksuksa ds bruh
vf/kd ek=k esa gksus ls gS fd mu vkblksVksiksa dh çpqjrk dk ;ksx dk vkblksVksi 238 ls vuqikr ç—fr
esa l`ftr vkblksVksi 238 ls vkblksVksi 235 ds lekuqikr ls vf/kd gksA
ffffVVVVIIIIiiii....kkkkhhhh :
1- "fo'ks"k fo[kaMuh; lkexzh" 'kCnin dh O;k[;k esa lzksr lkexzh 'kkfey ugha gSA
2- "fo'ks"k fo[kaMuh; lkexzh" dh dksbZ Hkh ek=k fofgr inkFkZ gSA
3- 0A2 fuEufyf[kr dks fu;af=r ugha djrk gS &
d- IywVksfue&238 ds vkblksVksfid lkaæ.k ds 80% ls vf/kd okyk IywVksfu;e
[k- fo'ks"k fo[kaMuh; lkexzh] tc bUgsa xzke ek=kvksa ;k de esa] midj.kksa ds loa snh ?kVdksa esa
yxk;k tkrk gSA
0A3 vU; lkexzh
"vU; lkexzh" ls rkRi;Z gS & fj,DVjksa gsrq xSj&ukfHkdh; lkexzh] ukfHkdh; laca/kh nksgjs mi;ksx okyh
fuEukafdr lkexzh] ,oa le;≤ ij dsUæ ljdkj }kjk fu/kkZfjr dh tkus okyh lkefxz;ka A
0A301 MîwVsfj;e vkSj Hkkjh ikuh
MîwVsfj;e] Hkkjh ikuh ¼MîwVsfj;e vkDlkbM½ vkSj dksbZ vU; ,slk MîwVsfj;e ;kSfxd ftlesa MîwVsfj;e vkSj
gkbMªkstu ijek.kqvksa dk vuqikr 1:5000 ls vf/kd gks¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 3
d½ ukfHkdh; fj,DVj esa bLrseky djus gsrq ,d ijs"k.k esa 5 fdyksxzke ls vf/kd MîqVhfj;e ijek.kqvksa
dh ek=k ;k ,d dSysaMj o"kZ esa ] fdlh ,d çkIrdrkZ ns'k gsrq 25 fdyksxzke MîqVhfj;e ijek.kq ls vf/kd
gksA
[k½ ,d dSysaMj o"kZ esa fdlh ,d çkIrdrkZ ns'k gsrq xSj&ukfHkdh; xfrfof/k esa 200 fdyksxzke
MîqVhfj;e ijek.kqvksa dh la[;k ls vf/kd gksA
0A302 ukfHkdh; xzsM xzsQkbV
5 Hkkx çfr fey;u ¼ihih,e½ cksjksu ds lerqY; ds 'kq)rk Lrj ls vf/kd gks vkSj ftldk ?kuRo 1-5
xzke/lhlh ls vf/kd gks;
d½ ukfHkdh; fj,DVj ;k fdlh vU; ukfHkdh; xfrfof/k eas mi;ksx gsrq 1 fdyksxzke ls vf/kd dh
ek=kvksa esaA
[k½ ,d dSysaMj o"kZ esa] fdlh ,d çkIrdrkZ ns'k gsrq xSj&ukfHkdh; xfrfof/k esa 30 eSfVªd Vu ls
vf/kd gksA
fVIi.kh : en 0A302 ds vra xZr xzsQkbV ikmMj ugha vkrk gSA
0A303 ftdksZfu;e] ftlesa gkQfu;e dh ek=k /kkrq] feJkrq ds :i esa ftdksZfu;e ds 500 Hkkx esa ,d Hkkx ls de
otu/Hkkj ¼vFkkZr 2000 ihih,e ls de½ ls gksrk gS A buesa ls fdlh ds Hkh feJ/kkrq] ;kSfxd] mlds
fofuekZ.k] vif'k"V vFkok iwoksZä ds vif'k"V gSaA
0A304 csfjfy;e /kkrq ] mlds ;kSfxd] feJ/kkrq ftuesa Hkkj ds 50% ls vf/kd csfjfy;e gks]mlds fofuekZ.k]iwoksZä
ds dksbZ vif'k"V ;k LØSi],oa csfjy lfgr mlds [kfut/lkaæ] ysfdu blesa fuEufyf[kr 'kkfey ugha gksaxs:&
d½ ,Dl&js e'khuksa ;k cksj&gksy y‚fxax ds fy, ç;ksx fd, tkus okys csfjfy;e foaMkst ,oa
[k½ ejdr/iUuk ¼emeralds½] cs:t ¼aquamarine½ ;k tsojksa esa mi;ksx gsrq ÞdV ,aM i‚fy'M Þ
v/kZ&dherh iRFkjksa ds :i esa csfjyA
0A305 laof/kZr yhfFk;e] ftlesa çk—frd vkblksVksih; çpqjrk ls ¼vFkkZr 7.5% ls vf/kd½ vf/kd çpjq rk okyk
¼6Li½ vkblksVksi yhfFk;e&6 gksrk gS vkSj loa f/kZr yhfFk;e ;qä mRikn vFkok ;qfä;k¡ tSlsfd rkfRod
yhfFk;e] feJ/kkrq] ;kSfxd] yhfFk;e ;qä feJ.k] mlds fofuekZ.k ;k mijksä dk dksbZ vif'k"V vFkok LØSiA
0A306 fu;ksfc;e ,oa VSUVsye] budh /kkrq,a] feJ/kkrq,a vkSj [kfut ftuesa dksyEckbV ,oa VSaVkykbV 'kkfey gSa A
0A307 vkjf{kr
0A308 Vªhf'k;e] Vªhf'k;e ;kSfxd vFkok Vªhf'k;e ds ,sls feJ.k ftuesa gkbMªkstu ds eqdkcys Vªhf'k;e ds ijek.kqvksa
dk vuqikr 1000 esa 1 Hkkx ls vf/kd gksrk gS] gkyk¡fd buesa vkxsZfud yscsy ;kSfxdksa] xSl iwfjr lkzsrksa vkSj
jsfM;ksVªslj v/;;uksa ds fy, Vªhf'k;e ;qä ty ds :i esa mi;ksx gksus okyh ek=k vkSj mís'; tSlh ckrsa
'kkfey ugha gSa A
0A309 gkQfu;e :
gkQfu;e /kkrq] otu ds vuqlkj 60% ls vf/kd gkQfu;e ek=k okyh feJ/kkrq,a] otu ds vulq kj 60%
ls vf/kd gkQfu;e okys gkQfu;e ;kSfxd] mlls fofufeZr gksus okyh phtsa vkSj iow ksZä esa ls fdlh ds
vif'k"V ,oa LØSi A
0A310 jsfM;e&226:
jsfM;e&226 ¼226Ra½] jsfM;e&226 dh feJ/kkrq,¡] jsfM;e&226 ds ;kSfxd] jsfM;e&226 ;qä feJ.k] mlds
fofuekZ.k vkSj mijksä esa ls fdlh ds mRikn vFkok ;qfä;k¡] flok; fpfdRlk ds ç;ksx esa vkus okyh
phtksa vkSj fdlh Hkh :i esa Ra&226 dh 0.37 GBq (10 mCi) ls de ek=k okys mRikn vFkok
midj.k ds A
0A311 cksjksu
cksjksu&10 ¼10B½ esa laof/kZr ,slk fuEukafdr cksjksu ftlesa çk—frd ls vf/kd vkblksVksih; çpqjrk gks :&
rkfRod cksjksu] ;kSfxd] cksjksu ;qä feJ.k] mlds fofuekZ.k] iow ksZä esa ls fdlh ds vif'k"V vFkok LØSi A
0A312 ghfy;e&34 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
ghfy;e&3 ¼3He½] ghfy;e&3 ;qä feJ.k vkSj iow ksZä esa ls fdlh Hkh inkFkZ ls ;qä mRikn vFkok ;qfä;k¡A
ffffVVVVIIIIiiii....kkkkhhhh: ghfy;e&3 ds 1 gm ls de ek=k okys mRikn vFkok ;qfä;k¡ blesa 'kkfey ugha gSA
0A313 jsfM;ksU;wfDy;kbM~l tks fuEufyf[kr Lo:iksa esa] vYQk&,u çfrfØ;k ij vk/kkfjr U;wVª‚u Jksr fuferZ djus
gsrq mi;qä gks:
d½ rkfRod A
[k½ 37 GBq çfr fdyks vFkok vf/kd dh dqy xfrfof/k okys ;kSfxd A
x½ 37 GBq çfr fdyks vFkok vf/kd dh dqy xfrfof/k okys feJ.k A
?k½ mijksä esa ls fdlh Hkh inkFkZ ls ;qä mRikn vFkok ;qfä;k¡ A
bbbbllll eeeennnn }}}}kkkkjjjjkkkk ffffuuuu;;;;aaffaaff====rrrr jjjjssffssffMMMM;;;;kkkkssUUssUU;;;;wwDDwwDDyyyykkkkbbbbMMMMkkkksasa sasa eeeesasa sasa ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr ''''kkkkkkkkffffeeeeyyyy ggggSSaaAASSaaAA
,fDVfu;e&225 ,fDVfu;e&227 dSfyQksfuZ;e&253
D;wfj;e& 240 D;wfj;e&241 D;wfj;e&242
D;wfj;e&243 D;wfj;e&244 vkbULVhfu;e&253
vkbULVhfu;e&254 xsMksyhfu;e&148 IywVksfu;e&236
IywVksfu;e&238 iksyksfu;e&209 iksyksfu;e&210
iksyksfu;e&208 jsfM;e&223 Fkksfj;e&228
Fkksfj;e&227 ;jw sfu;e&230 ;jw sfu;e&232
0B ffffooooffffggggrrrr mmmmiiiiLLLLddddjjjj
0B001 ukfHkdh; fj,DVj; ,sls fj,DVjksa ds fy, fo'ks"k :i ls fMtkbu ;k rS;kj fd, x, vFkok viuk, vFkok
mi;ksx fd, x, vFkok mi;ksx gsrq vfHkçsr lacaf/kr midj.k] ?kVd vkSj ç.kkfy;ka ftudk fooj.k fuEuor
gS :
d- laiw.kZ ukfHkdh; fj,DVj
[k- ukfHkdh; fj,DVj ik=
x- ukfHkdh; fj,DVj bZa/ku Hkj.k ,oa foltZu r=a
?k- ukfHkdh; ÅtkZ fu;a=.k NM+sa ,oa miLdj
³ ukfHkdh; fj,DVj nkc ufydk,¡ ¼çs'kj VîwCl½
p- ukfHkdh; bZa/ku DySfMax: ukfHkdh; bZa/ku DySfMax esa mi;ksx gsrq ftdksZfu;e Vîwc ;k ftdksZfu;e feJkrq
Vîwc¼ ;k Vîwcksa dh ,lsEcyh½ ftlesa ftdksZfu;e ds eqdkcys gkQfu;e dh ek=k 500 esa ls 1 Hkkx vFkok
blls de gS
N- çkFkfed dwysUV iai ;k ldqZysVj
t- ukfHkdh; fj,DVj baVuZYl
>- ukfHkdh; fj,DVj ds çkFkfed ;k ek/;fed dwysaV lfdZV esa mi;ksx gsrq rki fofuek;d ¼ok"i tfu=½
¥- U;wVª‚u lalwpd
V- ckgjh rkih; 'khYM
0B002 fofgr lkexzh ¼tSlsfd ;wjsfu;e] IywVksfu;e] Fkksfj;e] MîwVsfj;e] Hkkjh ikuh] Vªhf'k;e] yhfFk;e½ ds lalk/ku]
mRiknu] lkaæ.k] ifjorZu vFkok iqu:çkfIr ds fy, la;=a ; lac) miLdj] ?kVd vkSj blds fy, rS;kj dh xbZ]
viukbZ tkus okyh ;k mi;ksx gksus okyh vFkok mi;ksx gsrq vfHkçsr fMtkbu ç.kkfy;k¡ ftuesa fuEufyf[kr la;a=
'kkfey gSa fdarq bu rd gh lhfer ugha gS;
d- MîwVsfj;e] Hkkjh ikuh ;k MîwVsfj;e ;kSfxdksa ds mRiknu vFkok lkaæ.k gsrq la;=a –¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 5
1- ikuh – 1-5m ;k mlls vf/kd ds O;kl ds gkbMªkstu lYQkbM fofue; Vkoj rFkk 2Mpa ¼300
psi½ ds cjkcj ;k vf/kd nkc ij çpkyu esa l{ke] Hkkjh ikuh mRiknu ds fy, fo'ks"k :i ls fMtkbu
fd;k gqvk rFkk fufeZr
2- gkbMªkstu&lYQkbM xSl ds ifjpkyu gsrq fo'ks"k :i ls fMtkbu fd;k gqvk ;k fuferZ Cyksvj
rFkk daçsljA 1-8MPa ¼260psi½ pw"k.k ls vf/kd ;k cjkcj nkc ij çpkyu ds le; bu Cyksvjksa ;k
dEçsljksa dEçsljksa esa F:iqV {kerk 56m3/lsds.M ¼120]000 SCFM½ ls vf/kd ;k cjkcj gksrh gS] vkSj
budh lhy xhys H S lsok gsrq fMtkbfur gksrh gSaA
2
3- 1-5 eh- ls 2-5 eh ds O;kl vkSj 35 eh- vFkok mlls T;knk ÅapkbZ okys veksfu;k & gkbMªkstu
fofue; Vkoj] 15,eih, ;k mlls vf/kd nkc ij çpkyu esa l{ke] Hkkjh ikuh mRiknu ds fy, fo'ks"k :i
ls fMtk;u fd;k x;k ;k fufeZr
4- Vkoj baVuZy rFkk LVst iai : Hkkjh ikuh ds mRiknu ds fy, fo'ks"k :i ls fMtk;u fd;k x;k
fufeZr Vkoj baVuZy rFkk LVst iaiA Vkoj baVuZy esa fo'ks"k :i ls fMtk;u fd;k x;k LVst dkaVSDVj
'kkfey gSa tks baVhesV xSl/fyfDoM dkaVSDV dks çksRlkfgr djrs gSaA LVst iEiksa esa dkaVSfDVax LVst baVuZy
ds vanj ls LVst Vkojksa esa rjy veksfu;k ds ifjpkyu ds fy, fo'ks"k :i ls fMtk;u fd, x, lceflZcy
iEi 'kkfey gSa
5- 3 ,eih, vFkok mlls vf/kd ds vkijsfVax çs'kj okys veksfu;k ØSdj tks Hkkjh ikuh mRiknu ds
fy, fo'ks"k :i ls fMtk;u fd;k x;k ;k fufeZr
6- 'vku ykbu' gkbMªkstu/MîwVsfj;e vuqikr fo'ys"k.k dh {kerk okys vojä vo'kks"k.k fo'ys"kd
7- laof/kZr MîwVsfj;e xSl ds Hkkjh ikuh esa ifjorZu gsrq mRçsjd cuZj
8- laiw.kZ Hkkjh ikuh mUu;u ç.kkfy;k¡ vFkok blds grs q d‚ye
9- veksfu;k&gkbMªkstu fofue; çØe dk ç;ksx djds Hkkjh ikuh ds mRiknu ds fy, veksfu;k
la'ys"k.k duoVZj ;k la'ys"k.k bdkbZ;k¡
[k½ ;wjsfu;e ds :ikarj.k gsrq la;a=
1- ;wjsfu;e v;Ld lkaæ.kksa dk UO esa :ikra j.k gsrq ç.kkfy;k¡
3
2- UO ls UF esa :ikra j.k gsrq ç.kkfy;k¡
3 6
3- UO ls UO esa :ikra j.k gsrq ç.kkfy;k¡
3 2
4- UO ls UF esa :ikra j.k gsrq ç.kkfy;k¡
2 4
5- UF ls UF esa :ikra j.k gsrq ç.kkfy;k¡
4 6
6- UF ls ;wjsfu;e /kkrq esa :ikra j.k gsrq ç.kkfy;k¡
4
7- UF ls UO esa :ikra j.k gsrq ç.kkfy;k¡
6 2
8- UF ls UF esa :ikra j.k gsrq ç.kkfy;k¡
6 4
9- UO ls UCI esa :ikra j.k gsrq ç.kkfy;k¡
2 4
x- IywVksfu;e ds :ikarj.k gsrq la;a=
1- IywVksfu;e ukbVªsV ls v‚DlkbM esa :ikra j.k gsrq ç.kkfy;ka
2- IywVksfu;e /kkrq mRiknu gsrq ç.kkfy;kaA
?k- Vªhf'k;e ds mRiknu] çkfIr] fu"d"kZ.k] lkaæ.k ;k gLru gsrq Vªhf'k;e lqfo/kk,a ;k la;=a ,oa gkbMªkstu ;k
ghfy;e jsfÝftjs'ku ;wfuVksa] vkSj gkbMªkstu vkblksVksi HkaMkj.k ;k /kkrq ds gkbMªkbMksa dk HkaMkj.k ;k 'kq)hdj.k
ek/;e ds :i esa mi;ksx djrs gq, 'kq)hdj.k ç.kkfy;kas lfgr gsrq midj.kA
³ yhfFk;e vkblksVksi i`FkDdj.k lqfo/kk,a ;k la;a= vkSj ç.kkfy;ka rFkk rRgsrq miLdj fuEu çdkj gSa&
1- yhfFk;e vkblksVksiksa ds i`FkDdj.k gsrq lqfo/kk,a ;k la;=a
2- yhfFk;e& ikjk feJ.k çfØ;k ij vk/kkfjr yhfFk;e vkblksVksiksa ds i`FkDdj.k gsrq miLdj
d½ yhfFk;e feJ.k gsrq fo'ks"kr;k fMtkbu fd;s x;s iSDM æo&æo fofue; d‚ye ;6 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
[k½ ikjk ;k yhfFk;e feJ.k iai ;
x½ yhfFk;e feJ.k bysDVªksfyfll lsy ;
?k½ lkafær yhfFk;e gkbMªksDlkbM foyk;d gsrq ok"od ¼boksijsVlZ½A
3- yhfFk;e vkblksVksi i`FkDdj.k gsrq fo'ks"kr;k fMtkbu dh xbZ vk;u&fofue; ç.kfy;ka vkSj bl
gsrq fo'ks"kr: fMtkbu fd;s x;s ?kVd iqtsZ ;
4- yhfFk;e vkblksVksi i`FkDdj.k gsrq fo'ks"kr;k fMtkbu dh x;h jlk;u fofue; ç.kkfy;ka ¼Økmu
bZFkjks] ØkbIVSaM~l ;k ySfj;j bZFkjksa dk mi;ksx djds½ ,oa rRgsrq fo'ks"kr: fMtkbu fd;s x;s ?kVd iqtsZA
0B003 fdjf.kr ukfHkdh; bZa/ku ds iqulZla k/ku gsrq la;=a ,oa miLdj rFkk ,sls la;a=ksa ds fy, fo'ks"k :i ls
fMtkbu fd, x,] rS;kj fd, x, vFkok viuk, x, vFkok mi;ksx fd, x, vFkok mi;ksx gsrq vfHkçsr
?kVd ,oa ç.kkfy;k¡ ftuesa fuEufyf[kr phtsa 'kkfey gSa fdra q bu rd gh lhfer ugha gSa :&
d- fdjf.kr bZa/ku ?kVd ds drZu gsrq njw LFk çpkyu ds fy, fMtkbu dh xbZ e'khu A
[k- fdjf.kr ukfHkdh; bZa/ku dks ?kksyus ds fy, xje vkSj vR;ra la{kkjd æoksa dks lg ldus dh {kerk
okys ,sls ?kksyd ¼fMtkYolZ½ ftUgsa njw ls gh Hkkfjr ,oa esaVsu fd;k tk lds A
x- ukbfVªd vEy dk la{kkjd çHkko lg ldus okys foyk;d fu"d"kZd ,oa foyk;d fu"d"kZ.k
miLdj A
?k- ukbfVªd vEy dk la{kkjd çHkko lg ldus okys dsfedy gksfYMax vFkok HkaMkj.k ds ik= A
³- U;wVªku ekiu ç.kkfy;ksa dks fdjf.kr bZa/ku rRoksa ds iqu:çlLa dj.k gsrq Lopkfyr çØe fu;a=.k
ç.kkyh ds lkFk ,dhdj.k ,oa mi;ksxA
p- vlsafCy;ksa vkSj ?kVdksa lfgr fuEufyf[kr vkS|ksfxd miLdj
1- mPp ?kuRo ¼ysM Xykl vFkok vU;½ fofdj.k 'khfYMax foaMkst
2- fofdj.k –<+hHkwr Vhoh dSejs vFkok muds fy, ylsa sl
3- mPp 'kfä ds foLQksVdksa ds gLru gsrq fo'ks"k :i ls fMtkbu fd, x, 'jkscksV' vFkok ',aM
bQsDVj' vkSj mlds fy, fu;=a d ;wfuVsa
4- jsfM;ks&jklk;fud i`FkDdj.k çpkyuksa vFkok xeZ d{kksa ¼g‚V lsYl½ esa nwjLFk fØ;kvksa dks djus gsrq
mi;ksx fd, tk ldus ;ksX; nwjLFk ifjpkyd ¼eSuhiqysVlZ½ A
0B004 ukfHkdh; fj,DVjksa ls vFkok lzksr lkexzh ;k fo'ks"k fo[kaMuh; lkexzh ds lla k/ku gsrq la;a=ksa ls vFkok ukfHkdh;
iqulaZlk/ku la;a=ksa ls fudyus okys jsfM;kslfØ; vif'k"Vksa] fdjf.kr ukfHkdh; bZa/ku; fo'ks"k fo[kaMuh; lkexhz] ds
mipkj] gLru] HkaMkj.k ,oa ifjogu gsrq la;=a vkSj mlds fy, fo'ks"k :i ls fMtkbu ;k rS;kj fd, x,] viuk,
x, vFkok mi;ksx gsrq vfHkçsr miLdj A
0B005 fo'ys"k.k&miLdjksa ds vykok ,slh lHkh ç.kkfy;k¡] lacaf/kr miLdj vFkok ?kVd tks ;jw sfu;e] IywVksfu;e] yhfFk;e
vFkok cksjksu ds vkblksVksiksa ds i`FkDdj.k ;k loa /kZu gsrq fo'ks"k :i ls fMtkbu ;k rS;kj fd, x,] viuk, x,]
mi;ksx fd, x, vFkok mi;ksx gsrq vfHkçsr gksa ftudk fooj.k fuEuor gS :
0B005 ,- xSl lsaVªh¶;wxksa esa mi;ksx gsrq fo'ks"k :i ls fMtkbu vFkok rS;kj fd, x, xSl lsaVªh¶;wx] vlsafCy;k¡ rFkk ?kVd
1- xSl lsaVªh¶;wx
2- laiw.kZ jksVj ,lsacfy;ksa] iryh fHkfÙk okys flfyaMj ;k vkil esa tqMs+ gq, iryh fHkfÙk okys flfyaMj] 0B005
esa of.kZr mPp lkeFkZ~; ls ?kuRo ds vuqikr okyh ,d ;k ,dkf/kd lkefxz;ksa ls fufeZrA ;fn vkil esa tqM+s
gksa rks flfyaMjksa dks 0B005.a.4 esa of.kZrkuqlkj yphys csyks ;k NYyksa ls tksMk+ x;k gksA /kkjk
0B005.a.5 vkSj 0B005.a.4.6 esa of.kZrkuqlkj jksVj ij ,d vkra fjd cSQy vkSj ,aM dSi yxk;s x;s
gksaA
3- jksVj Vîwc flfyaMj: fo'ks"kr: fMtkbu fd;s x;s ;k rS;kj fd;s x;s iryh fHkfÙk okys flfyaMj ftudh
eksVkbZ 12 fe-eh- ;k de, O;kl 75 fe-eh- vkSj 650 fe-eh- ds chp rFkk 0B005.a fVIi.kh&1 esa
of.kZrkuqlkj ,d ;k ,dkf/kd mPp lkeFkZ~; ls ?kuRo vuqikr okyh lkefxz;ksa ls cuh gksaA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 7
4- NYys ;k csyks: ,d jksVj Vîwc dks LFkkfud vk/kkj nsus ;k dbZ jksVj Vîwcksa dks ,d lkFk tksM+us gsrq fo'ks"k
:i ls fMtkbfur vkSj csyks ,d 3 fe-eh- ;k de eksVkbZ ls 650 fe-eh- gksA ;g ?kVd /kkjk 0B005.a dh
fVIi.kh&1 esa of.kZr mPP lkeF;Z ls ?kuRo vuqikr okyh lkefxz;ksa ls fufeZr gksA
5- cSQy: r'rjh vkdkj ds ?kVd ftudk O;kl 75 feeh- vkSj 650 feeh- ds chp gks ftUgsa eq[; lsijs'ku psacj
ls Vsd&v‚Q psacj dks vyx&Fkyx djus gsrq ,d jksVj Vîwc ds vanj yxkus gsrq fo'ks"kr: fMtkbu ;k
fufeZr fd;k x;k gks] vkSj [kaM 0B005.a dh fVIi.kh&1 esa of.kZr mPp lkeFkZ~; ls ?kuRo vuqikr okyh
lkefxz;ksa ls fofufeZr gksA
6- 'kh"kZ ;k v/kLry dSIl : jksVj Vîwc ds vaR; esa fQV gksus ds fy, fo'ks"k :i ls fMtkbu ;k fuferZ 75
,e,e ls ysdj 400 ,e,e rd ds O;kl ds fo'ks"k :i ls fMtkbu ;k fufeZr fMLd vk—fr ds ?kVd rFkk
bl çdkj jksVj Vîwc ds vanj UF dks /kkfjr djrk gS rFkk dqN ekeyksa esa Åijh fc;fjax ¼'kh"kZ dSi½ ds
6
?kVd dks ,dh—r Hkkx ds :i esa liksVZ djuk] cuk, j[kuk] lekfo"V djuk ;k eksVj rFkk yksvj fc;fjax
¼v/kLry dSi½ ds ?kw.khZ ?kVdksa dks ogu djuk rFkk [k.M 0B005.a esa fVIi.kh&1 esa of.kZr mPp 'kfä ls
?kuRo vuqikr lkefxz;ksa rd fufeZrA
7- fo'ks"k :i ls fufeZr pqEcdh; fuyEcu fc;fjax ftuesa fuEu nksuksa fo'ks"krk,a gSa :
d- ,d gkÅflax ds vanj fuyafcr oy;kdkj pqEcd ;qä fc;fjax vlsEcfy;k¡ tks ÞUF ds la{kkj.k
6
çfrjks/kh lkefxz;ksaß ls cuh ;k jf{kr gSa ¼[k.M 0B005.a ds fVIi.kh 2 nsf[k,½ ftlesa voeanu ek/;e gksrk
gS rFkk /kqozh; [kaM okyh pqEcdh; dWifyax ;k jksVj ds 'kh"kZ dSi esa fQV nlw jk pqEcd gksrk gSA
[k- xSl lsaVªh¶;wx ds lkFk ç;ksx ds fy, fo'ks"k :i ls vfHkdfYir ;k fufeZr lfØ; pqEcdh; fc;fjaxA bu
fc;fjaxksa esa fuEufyf[kr fo'ks"krk,a gksrh gSa :
i½ 600 gVZt ;k vf/kd ij ?kwe jgs jksVj dsfUær j[kus ds fy, fMtkbfur rFkk
ii½ ,d ?k.Vs ls vf/kd dk;Z djus ds fy, fo'oluh; fo|qr vkiwfrZ rFkk/;k vckf/kr fo|rq vkiwfrZ
¼;wih,l½ bdkbZ ls tqM++hA
8- fc;fjax/MEilZ : fo'ks"k :i ls fMtkbfur ;k fufeZr fc;fjaXl ftlesa MEij ds Åij vk:<+ /kjq kxz/di
vlsEcyh gksrh gSA ;g /kqjkxz lekU;r: dBksfjr LVhy 'kS¶V dk gksrk gS ftlds ,d f'kjs ij vnZ~/kxksyk
gksrk gS ftlesa nwljs f'kjs ij [k.M 0B005.a 6 esa of.kZr v/kLry dSi ls tksM+us dh lqfo/kk gksrh gSA
gkykafd] bl 'kS¶V esa tqM+h gqbZ æoxfrdh; fc;fjax gks ldrh gSA ,d i`"B ij æoxfrdh; narqj.k ;qä ;g
di isysV :fir gksrk gSA bu ?kVdksa dh vkiwfrZ vDlj vyx ls MEij esa dh tkrh gSA
9- vkf.od iEi : vkf.od iEi mPp fuokZr iEi gksrs gSa ftlesa vra : e'khfur ;k cfg"—r dqaMfyr [kk¡pk
rFkk var: e'khfur os/k ;qä fo'ks"k :i ls fMtkbfur ;k fufeZr flysaMj gksrs gSaA çk:fid foek,a bl çdkj
gksrh gSa : 75 ,e,e ls 650 ,e,e rd vkra fjd O;kl] 10 ,e,e ;k vf/kd dh fHkfÙk eksVkbZ] O;kl ds
cjkcj ;k blls vf/kd yEckbZ A ;s [kk¡ps vuqçLFk dkV esa çk:fid :i ls vk;rkdkj gksrs gSa rFkk 2 ,e,e
;k blls vf/kd dh xgjkbZ okys gksrs gSaA
10- oy; :fir eksVj LVsVj : 600 gVtZ ;k vf/kd dh vko`fÙk ij rFkk 40 oh, ;k vf/kd 'kfä ij fuokrZ
esa rqY;dkfyd çpkyu ds fy, mPp xfr cgqpj.k ,lh fgLVsfjfll ¼;k çfr"VaHk½ eksVjksa ds fy, fo'ks"k :i
ls fMtkbfur ;k fufeZr oy; :fir LVsVjA bu LVsVjksa esa çk:fid 2-00 ,e,e eksVh ;k blls de dh
iryh ijrksa ;qä Lrfjd vYi gkfu ykSg dksj ij cgqpj.kh; okbafMax gks ldrh gSA
11- 30 ,e,e rd dh fHkfÙk eksVkbZ ds –<+ flysaMj ;qä xSl lsaVªh¶;wx ds jksVj Vîwc vlsEcyh ;qä lsaVªh¶;wx
gkÅflax/xzghrk ftlesa ;FkkFkZekih vaR; gksrs gSa tks ,d nlw js ds lekukra j gksrs gSa rFkk 0]05 fMxzh ds vanj
;k blls de esa flysaMj ds vuqnS/kZ~; v{k ds vfHkyac gksrs gSaA
12- ok;q la?kê&nkc ufydk ds }kjk jksVj Vîwc ds vanj ls UF fu"d"kZ.k ds fy, Vîwcksa okys Ldwi rFkk
6
dsUæh; xSl fu"d"kZ.k ç.kkyh esa fQDl fd, tkus esa l{keA
fVIi.kh 1: lsaVªh¶;wx jksVsfVax ?kVdksa gsrq ç;qä lkefxz;ksa esa fuEufyf[kr 'kkfey gS:
¼d½ 1-95 GPa ;k vf/kd dh pje ruu lkeFkZ~; okyk esjkftax LVhy
¼[k½ 0-46 GPa ;k vf/kd dh pje&ruu lkeFkZ~; okyk vY;wehfu;e feJkrq8 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
¼x½ la;qä LVªDpj esa mi;ksx gsrq mi;qä ,oa 3-18x106 eh- ;k vf/kd dk fof'k"B e‚MîwYl ,oa 7-
62x104 eh- ;k vf/kd dh fof'k"B pje&ruu lkeFkZ~; okys fQykesaVjh lkefxz;ka
¼fof'k"B e‚MîwYl N/m3 esa fof'k"B Hkkj }kjk foHkkftr N/m2 esa ;ax dk e‚MîwYl gS; fof'k"B
pje&ruu lkeFkZ~; N/m3 esa fof'k"B Hkkj }kjk foHkkftr N/m2 esa pje&ruu lkeFkZ~; gS½
fVIi.kh 2: fuEur: of.kZr enksa esa ls dqN ;k rks UF xSl ds lkFk lh/ks laidZ esa vkrh gSa ;k
6
lsaVªh¶;wt vkSj lsaVªh¶;wt ls lsaVªh¶;wt vkSj dSLdsM ls dSLdsM esa xSl ds çokg dks lh/ks fu;af=r djrh gSA
UF ls la{kkfjr gksus ls eqä lkefxz;ksa esa 'kkfey gS& rkack] rkack feJkrq] LVsuysl LVhy] vY;qehfu;e]
6
vY;qehfu;e v‚DlkbM] vY;qehfu;e feJkrq] fudsy ;k 60% ;k vf/kd fudsy ;qä feJkrq vkSj
¶yksfjusVsM gkbMªksdkcZu i‚yhejA
0B005.b fo'ks"k :i ls fMtkbfur ;k rS;kj dh x;h xSl lsaVªh¶;wx lao/kZu la;=a ksa gsrq lgk;d ç.kkfy;ka] miLdj
vkSj ?kVdA
1- lsaVªh¶;wx dSLdsM ds vanj UF gLru gsrq e'khu gsMj ikbfiax ç.kkfy;kaA
4
2- lsaVªh¶;wx lao/kZu gsrq eksVj LVsVj lIykb djus gsrq fo'ks"k :i ls fMtkbfur ;k rS;kj fd;s x;s
ÝhDosalh psatj ¼dUoVZj ;k bUoVZj½ ftuesa fuEur: of.kZr lHkh vfHky{k.k gksa vkSj ml gsrq fo'ks"k:i ls
fMtkbfur ?kVdA
¼d½ 600 H ;k vf/kd dk eYVhQst ÝhDolsa h vkmViqV; vkSj
2
¼[k½ mPp LFkkf;Ro ¼0.2% ls csgrj ÝhDolsa h fu;=a .k½
0B005.c xSlh; fM¶;wtu lao/kZu esa mi;ksx gsrq fo'ks"k :i ls fMtkbfur ;k rS;kj dh xbZ vlsacfy;ka vkSj ?kVd
1- xSlh; fM¶;wtu cSfj;j vkSj UF ls la{kkj.k dk çfrjks/kh cSfj;j lkefxz;k¡
6
2- ÞUF ls la{kkj.k dh çfrjks/kh lkefxz;ksaß ls fufeZr ;k jf{kr xSlh; fM¶;wtu gkmflaxA
6
3- daçslj ¼i‚ftfVo çfrLFkkiu] lsaVªh¶;wxy vkSj v{kh; çokg çdkj ds½ ;k xSl Cyksvj] ftudh pw"k.k
vk;ru {kerk 1m3/ feuV ;k vf/kd UF gks]ftLpktZ çs'kj 500KPa rd gks] rFkk UF ifjos'k esa
6 6
nh?kkZof/k çpkyu gsrq fMtkbfur 10:1 ;k dke dk çs'kj vuqikr gks] rFkk UF ls la{kkj.k dh çfrjks/kh
6
lkefxz;ksa ls fufeZr ;k jf{kr gksA
0B005.d xSlh; folj.k lao/kZu esa mi;ksx gsrq fo'ks"kr: fMtkbfur ;k rS;kj dh xbZ lgk;d ç.kkfy;ka] miLdj vkSj
?kVd :
1- xSlh; folj.k dSLdsMksa ds vra xZr UF ds gLru gsrq ikbfiax ç.kkfy;ka vkSj gsMj ç.kkfy;kaA
6
0B005.e ok;qxfrdh lao/kZu la;a=ksa esa mi;ksxkFkZ fo'ks"k :i ls fMtkbfur ;k fufeZr ç.kkfy;ka] miLdj vkSj ?kVd;
1- fo'ks"k:i ls fMtkbfur ;k rS;kj fd;s x;s lsijs'ku u‚ty ,oa mudh ,lsacfy;ka] lsijs'ku u‚ty
dVko ds vkdkj okyk 1 fe-eh- ls de oØrk;qä ifjf/k okys ofØr pkSuy gSa tks UF ls gksus okys
6
la{kkj.k&çfrjks/kh lkexzh ls cus gSa vkSj u‚ty ds vanj pkdw tSlh /kkj cukrs gSa tks u‚ty ls çokfgr xSl
dks nks fgLlksa esa foHkkftr djrs gSaA
2- fo'ks"k:i ls fMtkbfur ;k rS;kj fd;s x;s oksVsZDl Vîwc vkSj mudh ,lsacyhA oksVsZDl Vîwc
flfyaMj ds vkdkj ds ;k Vsifjr gksrs gSa vkSj UF tfur la{kkj.k çfrjks/kh lkefxz;ksa ls fuferZ ;k jf{kr
6
gksrh gSa ¼/kkjk 0B005.a dh fVIi.kh 2 ns[ksa½ vkSj blesa ,d ;k vf/kd Li'kZjs[kh; buysV gksrs gSaA ;g Vîwcsa
fdlh ,d ;k nksuksa fljksa ij u‚ty Vkbi ds tqMko ls lfTtr gksrh gSA
3- fo'ks"k:i ls fMtkbfur ;k rS;kj fd;s x;s daçs'kj ;k xSl Cyksvj tks UF /dSfj;j xSl
6
¼gkbMªkstu ;k ghfy;e½ feJ.k ls la{kkj.k dh çfrjks/kh lkefxz;ksa ls cuh ;k jf{kr gksA
4- oksVsZDl Vîwcksa ;k lsijs'ku u‚tyksa dk lja ks/ku djus gsrq UF ls la{kkj.k dh çfrjks/kh lkefxz;ksa ls
6
fufeZr ;k jf{kr fo'ks"k :i ls fMtkbfur ;k rS;kj dh x;h lsijs'ku rRo gkmflax ;
5- ok;qxfrdh; dSLdsMksa ds vanj] UF ds gLru gsrq UF ls la{kkj.k dh çfrjks/kh lkefxz;ksa ls
6 6
fufeZr ;k jf{kr fo'ks"k :i ls fMtkbfur ;k rS;kj dh x;h gsMj&ikbfiax ç.kkfy;ka ;¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 9
6- UF /dSfj;j lsijs'ku ç.kkfy;ka] dSfj;j xSl ¼gkbMªkstu ;k ghfy;e½ ls UF dks vyx djus
6 6
gsrq ;
0B005.f jlk;u fofue; ;k vk;u fofue; loa /kZu la;a=ksa esa mi;ksx gsrq fo'ks"k :i ls fMtkbfur ;k rS;kj dh xbZ
ç.kkfy;ka] miLdj vkSj ?kVdA
1- jlk;u fofue; çkslsl dk mi;ksx dj ;jw sfu;e loa /kZu ds fy, fo'ks"k :i ls fMtkbfur ;k rS;kj
dh x;h ;kaf=d ikoj buiqV okys çfr/kkjk æo&æo fofue; d‚ye ¼jlk;u fofue;½A ;g d‚ye vkSj
buds vkarfjd Hkkx lkekU;r: ,slh lkefxz;ksa ls fufeZr fd;s tkrs gSa tks lkafær gkbMªksDyksfjd ,flM ?kksyksa
}kjk la{kkj.k ds çfrjks/kh gksaA d‚ye dk LVst jsftMlsa le; lkekU;r: 30 lsdsaM ;k de gksuk fMtkbu
fd;k tkrk gSA
2- æo&æo lsaVªh¶;wx dkaVSDVlZ ¼jlk;u&fofue;½] tks jlk;u fofue; çkslsl dk mi;ksx djus okys
;wjsfu;e lao/kZu gsrq fo'ks"k :i ls fMtkbfur ;k rS;kj fd;s tkrs gSaA ,sls dkaVSDVj lkafær gkbMªksDyksfjd
,flM ?kksyksa ls gksus okys la{kkj.k ds çfrjks/kh lkefxz;ksa ls cuk;s ;k jf{kr fd;s tkrs gSaA d‚ye dk LVst
jsftMsal le; lkekU;r: 30 lsdsaM ;k blls de fMtkbfur fd;k tkrk gSA
3- ;wjsfu;e fu"d"kZ.k ç.kkfy;ka vkSj miLdj ¼jlk;u fofue;½:
d- jlk;u fofue; çkslsl dk mi;ksx djrs gq,] ;jw sfu;e loa /kZu gsrq ;jw sfu;e dks ,d la;kstd
fLFkfr ls nwljh esa fjMîwl djus gsrq fo'ks"k :i ls fMtkbfuax ;k rS;kj fd;s x;s fo|qr jlk;fud fjMD'ku
lsy çkslsl ?kksyksa ls laidZ esa vkus okyh lsy lkefxz;ka] lkafær gkbMªksDyksfjd ,flM l‚Y;w'kuksa }kjk gksus
okys la{kkj.k dh çfrjks/kh gksuh pkfg,A
[k- U+4 dks dkcZfud /kkjk ls ckgj fudkyus gsrq d‚LdsM ds çksMDV ,aM ij foyk;d fu"d"kZ.k
miLdj vkSj iaiksa ;k vU; Vªkla Qj ;qfä;ksa okys fo'ks"k :i ls fMtkbu ;k rS;kj dh xbZ ç.kkfy;kaA
4- mPp ifj'kq) ;wjsfu;e DyksjkbM dk mRiknu djus gsrq foy;uu] foyk;d fu"d"kZ.k vkSj/;k vk;u
fofu;e midj.k ;qä QhM rS;kjh ç.kkfy;ka ¼jlk;u fofue;½A
5- ;wjsfu;e v‚fDlMslu ç.kkfy;ka ¼jlk;u&fofue;½ U+3 ls U+4 esa vkfDlMslu gsrqA
6- æqr&vfHkfØ;kdkjh vk;u fofue; jsftu/vo'kks"kd ¼vk;u ,Dlpsat½ jlk;u&fofue; çkslsl dk
mi;ksx dj ;wjsfu;e lao/kZu gsrq fo'ks"k :i ls fMtkbu ;k cuk;s x;s æqr vfHkfØ;kdkjh vk;u fofue;
jsftu ;k vf/k'kks"kd ftuesa fNæ;qä eSØksjsfVdqyj jsftu vkSj/;k isfydqyj LVªDpj ;k vU; la;qä LVªDpj
fdlh Hkh mi;qä :i esa tSls d.kksa ;k Qkbcj tks lkafær gkbMªksDyksfjd ,flM ?kksyksa ds çfr jlk;fud :i
ls çfrjks/kh gSA
7- vk;u fofue; d‚ye ¼vk;u&fofue;½
vU; fofue; jsftu/ vf/k'kks"kd ds iSDM lLa rj dks /kkfjr ,oa vk/kkj nsus okys rFkk lkafær gkbMkªsDyksfjd
,flM ?kksyksa }kjk la{kkj.k dh çfrjks/kh lkefxz;ksa ls fufeZr ;k jf{kr flfyaMjuqek d‚yeA
8- vk;u fofue; fj¶yDl ç.kkfy;ka ¼vk;u fofue;½
vk;u fofue; lao/kZu dkLdsMksa esa mi;ksx fd;k tkus okyk jlk;u v‚fDlMkbftax ;k fjMîwflax ,tsaVksa ds
iqu: mRiknu gsrq jlk;fud ;k fo|qr jlk;fud v‚fDlMslu ;k fjMD'ku ç.kkfy;kaA
0B005.g yslj vk/kkfjr lao/kZu la;a=ksa esa mi;ksx gsrq fo'ks"k :i ls fMtkbu ;k rS;kj dh x;h ç.kkfy;ka] miLdj
vkSj ?kVdA
1- ;wjsfu;e ok"ihdj.k ç.kkfy;ka ¼ijek.kq ok"iu vk/kkfjr i)fr;ka½
2- æo ;k okf"ir ;wjsfu;e /kkrq gLru ç.kkfy;ka ,oa ?kVd
¼ijek.kq ok"iu vk/kkfjr i)fr;ka½
3- ;wjsfu;e /kkrq ÞmRikn vkSj VsYlß laxzkgd ,lsacfy;ka
¼ijek.kq ok"iu vk/kkfjr i)fr;ka½
4- lsijsVj e‚Mîwy gkmflax ¼ijek.kq ok"iu vk/kkfjr i)fr;ka½
5- lqijlksfud ,Dlisa'ku u‚ty ¼v.kq vk/kkfjr i)fr;ka½
6- ÞmRiknuß vkSj ÞVsYlß laxzkgd ¼v.kq vk/kkfjr i)fr;ka½10 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
7- UF /dSfj;j xSl daçslj ¼v.kq vk/kkfjr i)fr;ka½
6
8- jksVjh 'kk¶V lhysa ¼v.kq vk/kkfjr i)fr;ka½
9- ¶yksfjus'ku ç.kkfy;ka ¼v.kq vk/kkfjr i)fr;ka½
10- UF /dSfj;j xSl lsijs'ku ç.kkfy;ka ¼v.kq vk/kkfjr i)fr;ka½
6
11- ;wjsfu;e vkblksVksiksa ds lsijs'ku gsrq Þysljß ;k yslj ç.kkfy;ka ;k ?kVd;
0B005.h IykTek lao/kZu la;a=ksa esa mi;ksx gsrq fo'ks"k :i ls fMtkbu ;k fufeZr fd;s x;s ç.kkfy;ka] miLdj vkSj
?kVd;
1- ekbØksoso ikoj lzksr vkSj ,aVhus : vk;uksa dks mRikfnr djus ;k Rofjr djus gsrq ,oa fuEufyf[kr
vfHky{k.k;qä fo'ks"k :i ls fMtkbu ;k fufeZr fd;s x;s ekbØksosc ikoj lzksr vkSj ,aVhus : 30 GH ls
2
vf/kd vko`fÙk vkSj vk;u mRiknu gsrq 50Kw ls vf/kd ehu/ikoj mRiknuA
2- 100 kH ls vf/kd dh vko`fÙk;ksa gsrq jsfM;ks vko`fÙk vk;u mÙkstu DokbyA
2
3- ;wjsfu;e IykTek mRiknu ç.kkfy;kaA
4- ;wjsfu;e /kkrq ok"i dh Å"ek vkSj la{kkj.k dh çfrjks/kh lkefxz;ksa ls fufeZr ;k jf{kr ;wjsfu;e /kkrq
ÞmRiknuß vkSj ÞVsYlß laxzkgd ,lsacfy;kaA
5- ;wjsfu;e IykTek lzksr] jsfM;ks vko`fÙk Mªkbo Dokby rFkk ÞmRiknß vkSj ÞVsYlß laxzkgdksa dks /kkfjr
djus gsrq lsijsVj e‚Mîwy gkÅflax ¼flfyaMj vkdkj ds½
0B005.i fo|qr pqacdh; laoa/kZu la;a=ksa esa mi;ksx gsrq fo'ks"k :i ls fMtkbu ;k rS;kj dh x;h ç.kkfy;ka] miLdj
vkSj ?kVd;
1- ;wjsfu;e vkblksVksi ds i`FkDdj.k gsrq fo|qr pqacdh; lsijsVj vkSj mlds fy, miLdj ,oa ?kVd]
ftlesa vk;u lzksr ¼ok"iu lzksr] vk;ukbtj vkSj che Rojd 'kkfey gS½] vk;u laxzkgd ¼dysDVj IysV
lfgr½] oSD;we gkÅflax rFkk pqacd /#o ds [kaM
2- vk;u lzksr gsrq mPp oksYVst fo|qr lIykb: vk;u lzksrksa gsrq fo'ks"k :i ls fMtkbu ;k rS;kj dh
x;h mPp oksYVst fo|qr lIykb ftlesa fuEufyf[kr vfHky{k.k gksa: lrr çpkyu esa l{ke 20]000V ;k
vf/kd dh vkmViqV oksYVst 1 ,aih;j ;k vf/kd dk vkmViqV djsaV rFkk 8 ?kaVs dh vof/k esa 0.01% ls
csgrj oksYVst fofu;euA
3- mPp 'kfä] MkbjsDV djsaV pqacd ikoj vkiwfrZ;ksa : fo'ks"k :i ls fMtkbu ;k rS;kj dh x;h mPp
'kfä] MkbjsDV djsaV pqacd ikoj lIykb ftlesa fuEufyf[kr lHkh vfHky{k.k gksa : 100V ;k vf/kd ij
rFkk 8 ?kaVs dh vof/k esa 0.01% ls csgrj djsaV ;k oksYVst fofu;eu ds lkFk 500A ;k vf/kd dk djsaV
vkmViqVA
0B005.j lao/kZu la;a=ksa esa mi;ksx gsrq fo'ks"k :i ls fMtkbu ;k rS;kj fd;s x;s vU; miLdj q vkSj ?kVd:
1- QhM ç.kkfy;ka/ßmRiknß vkSj VsYl çkfIr ç.kkfy;ka tSls QhM v‚VksDysOl] vksou ;k UF gLru
6
gsrq ç;qä ç.kkfy;ka] fMlCykbej] dksYM VªSi ;k iai] Bkslhdj.k ;k æohdj.k LVs'ku] ÞmRiknß ;k VsYl
LVs'kuA
2- UF tfur la{kkj.k dh çfrjks/kh lkefxz;ksa ls fufeZr ;k jf{kr rFkk gLrpkfyr ;k Lopkfyr
6
'kV&v‚Q ;k daVªksy dk;Z okys fo'ks"k 'kV v‚Q okYc] daVªksy okYc] csyks lhYM okYcA
3- UF6 xSl LVªhe ls v‚u&ykbu uewus ysus esa l{ke UF ekl LisDVªksehVj/vk;u lzksrA
6
4- daçs'kjksa ;k Cyksvjksa gsrq jksVjh 'kk¶V lhyA
5- UF tfur la{kkj.k dh çfrjks/kh lkefxz;ksa ls fufeZr ;k lja f{kr ghV& fofu;kedA
6
6- UF tfur la{kkj.k dh çfrjks/kh lkefxz;ksa ls fufeZr ;k lja f{kr fuokZr eSuhQksYM~l] fuokrZ gsMlZ
6
vkSj fuokZr iai lfgr fuokZr ç.kkfy;kaA
fVIi.kh 1: Js.kh 0B005 ds vra xZr çnf'kZr fu;a=.k] mu la;=a ksa vkSj miLdjksa ij Hkh ykxw gksrs gSa]
tks vU; rRoksa ds vkblksVksi i`FkDdj.k gsrq vfHkçsr gSaA
fVIi.kh 2: ÞvU; rRoß ls rkRi;Z gS gkbMªkstu] ;jw sfu;e vkSj IywVksfu;e ds vykok lHkh rRoA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 11
0B006 ukfHkdh; fj,DVj bZa/ku ?kVdksa ds lafojpu ds fy, la;=a rFkk fo'ks"k :i ls fMtkbfur ;k fuferZ ftlesa
fuEufyf[kr 'kkfey gSa ysfdu fuEufyf[kr rd lhfer ugha gSa :
d½ iw.kZ :i ls Lopkfyr isysV fujh{k.k LVs'ku tks bZa/ku isysV ds vafre foekvksa rFkk i`"B =qfV;ksa dh tk¡p
djus ds fy, fo'ks"k :i ls fMtkbfur ;k fufeZrA
[k½ Lopkfyr osfYMax e'khu tks bZa/ku fiuksa ¼;k jkMksa½ ij vaR; dSi dh osfYMax djus ds fy, fo'ks"k :i ls
fMtkbfur ;k fufeZrA
x½ Lopkfyr ijh{k.k rFkk fujh{k.k LVs'ku tks laiw.kZ bZa/ku fiuksa ¼;k jkM½ dh v[k.Mrk dh tk¡p djus ds
fy, fo'ks"k :i ls fMtkbfur ;k fufeZrA
?k½ ukfHkdh; bZa/ku DySfMax ds fuekZ.k ds fy, fo'ks"k :i ls fMtkbfur ;k fufeZrA
en ^x* esa ç:ih :i esa ;s midj.k 'kkfey gSa 1½ fiu ¼;k jkM½ vaR; dSi osYM dh ,Dl&js ijh{k.k] 2½
nkfcr fiuksa ¼;k jkM½ ls ghfy;e yhd fMVsD'ku] 3½ vanj bZa/ku isysV dh lgh Hkj.k dks tk¡pus ds fy,
fiuksa ¼;k jkM½ dh xkek LdSfuaxA
0B007 100 D;wjht ¼3.7x1012 csdqjy½ ls vf/kd gksus okyh jsfM;ksvkblksVksi dh ek=kvksa ds mRiknu] gLru]
HkaMkj.k rFkk ifjogu ds fy, la;=a ;k ç.kkfy;kaA
0B008 U;wVªku tujsVj ftlesa U;wVªku J`a[kyk vlsEcfy;ka rFkk fo[kaMî inkFkkZsa dks mRiknu djus ds fy, lHkh
çdkj dh lay;u vlsEcyh 'kkfey gSA
0C çkS|ksfxdh rFkk lk¶Vosvj
0A ;k 0B esa fofufnZ"V fofgr inkFkkZsa ;k fofgr midj.k ds fodkl] mRiknu ;k ç;ksx ds fy,
çkS|ksfxdh ;k lk¶VosvjA**
[[[[kkkk---- LLLLdddd¨¨¨¨eeeessVVssVV 3333,,,,111100003333 ddddss ss ffffyyyy,,,, ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr dddd¨¨¨¨ ççççffffrrrrLLLLFFFFkkkkkkkkffffiiiirrrr ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk%%%%&&&&
"3d103 VaxLVu] ekWfyCMsue v©j budh feJ/kkrq d.k ds :i esa v©j buds d.k dk vkdkj 50x10&6,e (50µm) vFkok
blls de g¨;"
xxxx---- LLLLdddd¨¨¨¨eeeessVVssVV 3333dddd111100007777 ddddss ss ffffyyyy,,,, ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr dddd¨¨¨¨ ççççffffrrrrLLLLFFFFkkkkkkkkffffiiiirrrr ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk%%%%&&&&
" 3d107 VkbVsfu;e&LVsfcykbTM MqIysDl LVsuysl LVhy (VhvkÃ&Mh,l,l)"
ÄÄÄÄ---- LLLLdddd¨¨¨¨eeeessVVssVV 3333dddd111111114444 ddddss ss ffffyyyy,,,, ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr dddd¨¨¨¨ ççççffffrrrrLLLLFFFFkkkkkkkkffffiiiirrrr ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk%%%%&&&&
**3d114 d- fudsy ikmMj ftldh 'kq)rk 99-0 çfr'kr vFkok Òkj esa vf/kd g¨ rFkk ekè; d.k dk vkdkj ,,lVh,ech
330 ekud }kjk ekfir 10µm ls de g¨
[k- >j>jk fudsy /kkrq] t¨ Åij fuÆn"V fudsy ikmMj ls mRikfnr g¨"
MMMM---- LLLLdddd¨¨¨¨eeeessVVssVV 3333dddd111111117777 vvvv©©©©jjjj rrrrRRRRllllaaccaaccaa//aa//kkkkhhhh ççççffffooooffff""""VVVV ddddss ss iiii''''ppppkkkkrrrr~~ ~~ ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr dddd¨¨¨¨ ççççffffoooo""""VVVV ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk%%%%&&&&
" 3d118 VkbVsfu;e feJ /kkrq ftuesa fuEufyf[kr fo'ks"krk,a g¨a :
d- 293 ds 20 fMxzh lsaVhxzsM ij 900,eih, vFkok blls vf/kd dh vafre ruus dh {kerk g¨; rFkk
[k- ckgjh Mk;ehVj 75 ,e,e vFkok blls vf/kd ds lkFk VÓwc vFkok flfyUMªdy B¨l #i¨a (Q¨Étx lfgr)
esaA
rduhdh fVIi.kh% '{kerk' 'kCn esa VkbVsfu;e feJ/kkrq dh ghV VªhVesaV ds iow Z vFkok i'pkr~ dh fLFkfr 'kkfey
gSA12 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
3d119 jhfu;e v©j bldh feJ/kkrq ftlesa jhfu;e dk Òkj 90 çfr'kr vFkok vf/kd jsfu;e fufgr g¨ rFkk jhfu;e
v©j VaxLVu dh feJ/kkrq ftuesa jhfu;e v©j VaxLVu ds fdlh Òh feJ.k esa 90 çfr'kr dk Òkj vFkok vf/kd
g¨ rFkk fuEufyf[kr fo'ks"krk,¡ g¨a:
d- 100 v©j 300 fe-eh- ds chp ds vkarfjd Mk;ehVj ds lkFk g¨y¨ flÇyMfjdy flesVªh (flÇyMj lsXesV¨a
lfgr) ds lkFk okys #i¨a esa; rFkk
[k- nzO;eku 20 fdxzk- ls vf/kd g¨A
3d120 çççç©©©©||||¨¨¨¨ffffxxxxddddhhhh vvvv©©©©jjjj llllkkkkWW¶¶WW¶¶VVVVooooss;;ss;;jjjj
3d1 vFkok 3d4 esas fuÆn"V oLrv¨a ds fodkl] mRiknu vFkok mi;¨x ds fy, ç©|¨fxdh v©j lkWQVos;j"
pppp---- LLLLdddd¨¨¨¨eeeessVVssVV 3333dddd444400001111 ddddss ss ffffyyyy,,,, ffffuuuuEEEEuuuuffffyyyyffff[[[[kkkkrrrr dddd¨¨¨¨ ççççffffrrrrLLLLFFFFkkkkkkkkffffiiiirrrr ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk
" 3d401 vR;f/kd foLQ¨Vd inkFkZ vFkok feJ.k] ftuesa fuEufyf[kr dk Òkj 2 çfr'kr ls vf/kd g¨%
d- lkbDy¨VsVªk esfFkysusVsVªkukbVªkekbu (,p,e,Dl) (lh,,l 2691&41&0) ;
[k- lkbDy¨VªkbesfFkysusVªkbukbVªkekbu (vkjMh,Dl) (lh,,l 121&82&4) ;
x- Vªkbekbu¨VªkbukbVª¨csathu (Vh,Vhch) (lh,,l 3058&38&6) ;
Ä- vehu¨MkbukbVª¨csat¨&¶;wj¨Dlu vFkok 7&vehu¨&4]6 ubVª¨csat¨ ¶;jw stsuy vkWDlkbM (,Mh,uch,Q)
(lh,,l 97096&78&1) ;
M- 1]1&Mk;feu¨&2] 2MkbukbVª¨bFkhyhu (Mh,Mhà vFkok ,Qv¨,Dl7) (lh,,l 145250&81&3) ;
p- 2]4&MkbukbVª¨bfeMkt¨y (Mh,uvkÃ) (lh,,l 5213&49&0) ;
N- Mkbvehu¨vt¨Dlh ¶;wjstu (Mh,,v¨,Q vFkok Mh,,,Q) (lh,,l 78644&89&0) ;
t- Mkbvehu¨VªkbukbVª¨csUthu (Mh,Vch) (lh,,l 1630&08&6) ;
>- MkbukbVª¨XykÃdyfjy (,p,e,Dl) (lh,,l 55510&04&8) ;
¥- 2]6&fcl (ikbØkbysfeu¨) &3] 5&MkbukbVª¨ikbfjMhu (ihokÃ,Dl) (lh,,l 38082&89&2) ;
V- 3]3'&Mkbvehu¨&2]2']4]4']6]6'&gsDlkukbVª¨ckbQsfuy vFkok MkbfiØkekbM (MhvkÃih,,e) (lh,,l
17215&44&0) ;
B- Mkbvehu¨vkt¨¶;wjstu (Mh,,tsM,Q) (lh,,l 78644&90&) ;
M- 1]4]5]8&VsVªkukbVª¨&ikbfjMkftu¨ [4]5&Mh] ikbfjMkthu (Vh,uih) (lh,,l 229176&04&9) ;
<- gsDlkukbVª¨fLVychu (,p,u,l) (lh,,l 20062&22&0) ; vFkok
3
.k- d¨Ã foLQ¨Vd ftldh fØLVy MsaflVh 1-8 xzke@Äu lseh ls vf/kd g¨ vkSj MsVksus'ku osyksflVh
8000 eh-@ls- vf/kd g¨A
fVIi.kh: "3d401d v¨j 3d401[k essa nh xà oLrqv¨a ds fu;kZr gsrq ykbllsa vkosnu lkekU;r% vLohdkj dj fn,
tk,axsA"
NNNN---- LLLLdddd¨¨¨¨eeeessVVssVV JJJJss..ss..kkkkhhhh 4444dddd]]]] 4444[[[[kkkk vvvv©©©©jjjj 4444xxxx vvvv©©©©jjjj rrrrRRRRllllaaccaaccaa//aa//kkkkhhhh ççççffffooooffff""""VVVV;;;;¨¨¨¨aa aa dddd¨¨¨¨ bbbbllll ççççddddkkkkjjjj ççççffffrrrrLLLLFFFFkkkkkkkkffffiiiirrrr ffffdddd;;;;kkkk ttttkkkk,,,,xxxxkkkk%%%%&&&&
"4d ijh{k.k v©j mRiknu midj.k lfgr midj.k] vlsacyht] laÄVd
4444dddd000000001111 ¶y¨ QkWÉex e'khusa] fLiu QkWÉex e'khusa] e'khusa t¨ Qy¨ QkWÆex QaD'kUl v©j eSaMªYl ds fy, l{ke g¨] bl
çdkj gSaS%
d- Qy¨ QkWÉex e'khu¨a ds fy, 5d205 ns[ksa¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 13
[k- fLiu QkWÉex e'khusa ftuesa fuEufyf[kr fo'ks"krk,¡ g¨a
1- rhu vFkok blls vf/kd j¨yj (,fDVo ;k xkbÇMx); v©j
2- ftls fofuekZrk ds VsfDudy LisflfQds'ku ds vuqlkj "U;wesfjdy daVª¨y"
;wfuV¨a ;k dEI;wVj daVª¨y ds lkFk t¨Mk+ tk ldrk gSA
x- j¨Vj&QkWÉex eSaMªYl ftUgsa 75 v©j 400 feeh- ds chp ds vkarfjd O;kl ds flÇyfMªdy j¨VlZ cukus gsrq
fMtkbu fd;k x;k gSA
fVIi.kh%
en 4d001d v©j 4d001[k esa ,slh e'khusa 'kkfey gSa ftuesa Çlxy j¨yj g¨rk gS ftls esVy lfgr n¨
lgk;d j¨yj t¨ eSaMªy d¨ li¨VZ djrk gS ijUrq fMQkWe¢Z'ku çfØ;k esa çR;{k :i ls Òkx ugÈ ysrk gS] d¨
fMQkWeZ djus ds fy, rS;kj fd;k x;k gSA
4444dddd000000002222 e'khuh v©tkj t¨ fuEufyf[kr gSa v©j muds feJ.k t¨ /kkrq] fljsfeDl ;k dEi¨ftV~l d¨ gVkus ;k dkVus ds
ç;¨tu ds fy, gSa] d¨ fofuekZrk ds VsfDudy LisflfQds'kUl ds vuqlkj n¨ ;k n¨ ls vf/kd ,Dlst esa ,d
lkFk "dUVwÇjx daVª¨y" ds fy, bysDVªkWfud ;=a ¨a ds lkFk t¨Mk+ tk ldrk gS;
u¨V% "U;wesfjdy daVª¨y" ;wfuV¨a ds fy, t¨ vius laca) "lkW¶Vos;j" en 4x
}kjk fu;af=r g¨rh gSA
dddd---- VuZ djus gsrq e'khusa ftuesa vkÃ,lv¨ 230@2 (1988) ds vuqlkj 35 feeh- ls vf/kd Mk;ehVj dh e'khfux
{kerk okyh e'khu¨a ds fy, fdlh yhfu;j ,fDll (v¨ojvkWy ikWft'kÇux) ds lkFk 6µm ls csgrj (de)
miyC/k lÒh dEisals'kUl lfgr "ikWft'kÇux ,D;¨jsflt" g¨;
fVIi.kh% en 4d002d mu ckj e'khu¨a (fLolVuZ) d¨ daVª¨y ugÈ djrk gS] t¨ vf/kdre ckj Mk;ehVj ds 42
fe-eh- ds cjkcj vFkok de g¨us rFkk ekmaÇVx pDl dh {kerk u g¨us dh fLFkfr esa dsoy ckjQhM Fkwz e'khÇux
rd lhfer g¨rh gSA e'khu¨a esa 42 feeh- ls de Mk;ehVj lfgr e'khÇux ikV~lZ ds fy, fMªÇyx rFkk@;k
feÇyx {kerk g¨ ldrh gSA
[[[[kkkk---- feÇyx ds fy, e'khu VwYl] ftuesa fuEufyf[kr fo'ks"krk,¡ g¨a:
1- vkÃ,lv¨ 230@2 (1988) ds vuqlkj fdlh yhfu;j ,fDll (v¨ojvkWy ikWft'kÇux) ds lkFk 6µm ls
csgrj (de) miyC/k lÒh dEisal'ksUl ds lkFk "ikWftf'kÇux ,D;jw slht" g¨;
2- n¨ vFkok blls vf/kd daVwÇjx j¨Vjh ,Dlst g¨; ;k
3- ik¡p vFkok vf/kd ,Dlst ftUgsa "daVwÇjx daVª¨y" ds fy, ,d lkFk lefUor fd;k tk ldrk gSA
fVIi.kh% en 4d002[k ds varxZr mu feÇyx e'khu¨a dk fu;a=.k ugÈ fd;k tkrk gS ftuesa fuEufyf[kr n¨u¨a
fo'ks"krk,¡ g¨a%%%%
1- x-,fDll VªSoy t¨ 2 eh0 ls vf/kd g¨ rFkk
2- vkÃ,lv¨ 230@2 1988 ds vuqlkj 30µm ls derj (vf/kd) x-,fDll ij lexz "ikWft'kÇux
,D;¨jslht" g¨A
xxxx---- xzkbaÇMx ds fy, e'khu VwYl ftuesa fuEufyf[kr es ls d¨Ã ,d fo'ks"krk g¨%
1- vkÃ,lv¨ 230@2 (1988) ds vuqlkj fdlh yhfu;j ,fDll (v¨ojvkWy ikWft'kÇux) ds lkFk 4µm ls
csgrj (de) miyC/k lÒh dEisal'ksUl ds lkFk "ikWftf'kÇux ,D;jw slht" g¨;14 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
2- n¨ vFkok blls vf/kd daVwÇjx j¨Vjh ,Dlst g¨; ;k
3- ik¡p vFkok vf/kd ,Dlst ftUgsa "daVwÇjx daVª¨y" ds fy, ,d lkFk lefUor fd;k tk ldrk gSA
fVIi.kh% en 4d002x ds varxZr xzkbaÇMx e'khu¨a d¨ fu;af=r ugÈ fd;k tkrk gS
t¨ bl çdkj gS%
1- flÇyfMªdy ,DlVuZy] baVjoy v©j ,DlVuZy&baVjuy xzkaÇMx e'khua ftuesa fuEufyf[kr lÒh fo'ks"krk,a g¨a
d- 150 feeh- vkmVlkbM Mk;ehVj vFkok yEckà dh vf/kdre odZihl {kerk rd lhfer; rFkk
[k- ,dlst ,Dl] okà v©j tsM rd lhferA
2- ftx xzkbaMl ftuesa 4 ekbØkWUl ls de (csgrj) v¨ojvkWy ikWft'kÇux ,D;¨jslh lfgr tsM&,fDll ;k
MCY;w&,fDll u g¨A vkÃ,lv¨ 230@2(1988) ds vuqlkj ikWft'kÇux ,D;wjslhA
ÄÄÄÄ---- ukWu ok;j Vkbi bysfDVªdy fMLpktZ e'khusa ftuesa n¨ ;k blls vf/kd daVwÇjx j¨Vjh ,Dlst g¨ rFkk ftUgsa
"daVwÇjx daVª¨y" ds fy, ,d lky lefUor fd;k tk ldrk gSA
fVIi.kh%1- vkÃ,lv¨ 230@2(1988) ds vuqlkj fd, x, eki¨a ls fuEufyf[kr çfØ;kv¨a ds rgr fudkys x,
LVsVsM "ikWft'kÇux ,D;¨jslh" Lrj vFkok çR;sd e'khu Vwy ekWMy ds fy, us'kuy bfDooSysaV~l dk mi;¨x
fd;k tk ldrk gS ;fn çnku fd;k tk, r¨ rFkk i`Fkd e'khuh ijh{k.k¨a ds ctk, jk"Vªh; çkf/kdj.k¨a }kjk
Lohdkj fd, tk ldrs gSaA
LVsVsM "ikWft'kÇux ,D;wjslh" bl çdkj ls fudkyh tkuh gS%
d- fdlh ekWMy dh ik¡p e'khu¨a dk p;u djsa ftudk ewY;kadu fd;k tkuk gS;
[k- vkÃ,lv¨ 230@2(1988) ds vuqlkj yhfu;j ,fDll ,D;jw slht dh eki djsaA
x- çR;sd e'khu ds çR;sd ,fDll ds fy, ,D;jw slh ewY; (,) dk fu/kkZj.k djsaA ,Dd;wjslh ewY; dh x.kuk
djus dh i)fr dk o.kZu vkÃ,lv¨ 230@2(1988) sLVSaMMZ esa dj fn;k x;k gS;
Ä- çR;sd ,fDll dh v©lr ,D;jw slh ewY; dk fu/kkZj.k djsaA ;g v©lr ewY; ekWMy (Ax, Ay....); ds
fy, çR;sd ,fDll dh LVsVsM "ikWft'kÇux ,D;jw slh" cu tkrk gS;
M- pw¡fd en 4d002 dk laca/k çR;sd yhfu;j ,fDll ls gS] vr% yhfu;j ,fDll ds cjkcj LVsVsM ikWft'kÇux
,D;wjslh ewY; g¨xk;
p- ;fn fdlh e'khu Vwy dk dkà ,fDll en 4d002d] 4d002[k] ;k 4d002x }kjk fu;af=r u g¨ v©j
xzkbaÇMx e'khu¨a ds fy, vkÃ,lv¨ 230@2(1988) ds vuqlkj 6µm vFkok csgrj (de) dh v©j feÇyx rFkk
VÉux e'khu¨a ds fy, 8 µm vFkok vFkok csgrj (de) LVVsM "ikWft'kÇux ,D;jw slh" g¨] r¨ fcYMj d¨ çR;sd
18 ekg esa ,d ckj ,D;wjslh Lrj dh iqu% iqf"V djuh pkfg,A
2- en 4d002 ds varxZr mu fo'ks"k ç;¨tu e'khu VwYl d¨ fu;af=r ugÈ fd;k tkrk gS t¨ fuEufyf[kr es ls
fdlh ikVZ ds fofuekZ.k rd lhfer g¨%
d- fx;lZ
[k- ØSd'kkQV~l ;k dSe 'kkQV~l¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 15
x- VwYl v©j dVlZ
Ä- ,DlVªwMj oElZ
rrrrdddduuuuhhhhddddhhhh ffffVVVVIIIIiiiiffff....kkkk;;;;kkkk¡¡¡¡ 1111- ,fDll ukWesuDyspj baVjus'kuy LVSaMMZ vkÃ,lv¨ 841] "U;wesfjdy daVª¨y
e'khUl&,fDll ,.M e¨'ku ukWesuDyspj ds vuqlkj g¨xk"A
2- daVwÇjx ,Dlst dh dqy la[;k esa x.kuk ugÈ fd, x, ,Dlls lsd.Mjh iSjsyy daVwÇjx ,Dlst g¨rs gSa
(mnkgj.k ds fy, gkWfjtkWUVy c¨Çjx feYl vFkok lsd.Mjh j¨Vjh ,fDll ij MCY;w&,fDll ftldh
lsUVjykbu çkbejh j¨Vjh ,fDll ds lekukra j g¨rh gS)A
3- j¨Vjh ,Dlst d¨ 360 fMxzh- ls vf/kd Äweus dh vko';drk ugÈ gSA ,d j¨Vjh ,Dlst yhfu;j fMokbl
}kjk pyk;k tk ldrk gS tSls ,d LØw ;k ,d jSd v©j ihfu;uA
4- 4d002 ds ç;¨tu¨a ds fy, ,Dlst dh la[;k ftUgsa dUVwÇjx daVª¨y ds fy, ,d lkFk lefUor fd;k tk
ldrk gS] ,Dlst dh og la[;k g¨rh gS ftlds lkFk ;k mlds pkj¨a v¨j odZihl dh çfØ;k ds n©jku odZihl
v©j Vwy ds chp ,dlkFk rFkk ijLij xfr mRiUu g¨rh gSA blesa d¨Ã vfrfjDr ,Dlst 'kkfey ugÈ gS ftlds
lkFk vFkok pkj¨a v¨j e'khu ds vanj lkis{k xfr mRiUu g¨rh gSA tSls%
d- xzkbafMx e'khu¨a esa Oghy MªsÇlx flLVEl;
[k- iSjsyy j¨Vjh ,Dlst] i`Fkd odZihl¨a dh ekmaÇVx gsrq fMtkbu fd, x,;
x- d¨&yhfu;j j¨Vjh ,Dlst] fofÒUu N¨j¨a ls pd esa fLFkj dj leku odZihl esa eSuqI;wysV djus gsrq fMtkbu
fd, x,A
5- e'khu Vwy ftlesa 3 esa ls de ls de 2 VÉux g¨ rFkk feÇyx vFkok xzkbaÇMx {kerkv¨a (mnkgj.k ds fy,
feÇyx {kerk ds lkFk VÉux e'khu dk ewY;kadu çR;sd ykxw çfof"V 4d002d] 4d002[k v©j 4d002x ds
fufeŸk fd;k tkuk pkfg,A
6- en 4d002[k-3 v©j 4d002x-3 esa os e'khu 'kkfey gSa t¨ iSjsyy dkbusesfVd fMtkbu (mnkgj.k ds fy,
DM~llkikWM~l) ij vk/kkfjr g¨ v©j ftuesa 5 vFkok blls vf/kd ,Dlst g¨a ijUrq j¨Vjh ,Dlst ugÈA
4d003 Mkbesa'kuy baLisD'ku e'khusa] baLVªwesaV ;k flLVEl] bl çdkj gSaSS%%SS%%
d- dEI;wVj daVª¨YM ;k U;wesfjdy daVª¨YM Mkbesa'kuy bLa isD'ku e'khusa (lh,e,e) ftuesa fuEufyf[kr n¨u¨a
fo'ks"krk,¡ g¨axh%
1- dsoy n¨ ,Dlst v©j fdlh ,fDll (,d Mkbesa'kuy) ds lkFk ysaFk estjesaV ds vf/kdre vuqes; =qfV g¨]
ftUgsa vkÃ,lv¨ 10360&2(2009) ds vuqlkj E0x MPE, EOy MPE, EOz MPE, ds fdlh
dkWfEcus'ku ds :i esa fpfUgr g¨ rFkk e'khu (vFkkZr ,fDll dh yEckà ds Òhrj) ds vkWijsÇVx jsat ds Òhrj
fdlh fcUnq ij (1-25+L@1000) µm (tgk¡ 2 feeh- es ekih xà yEckà gS) ds cjkcj vFkok de (csgrj) g¨;
vFkok
2- rhu vFkok blls vf/kd ,Dlst rFkk vkÃ,lv¨ 10360&2(2009) ds vuqlkj e'khu ds vkWijsÇVx jsat (vFkkZr
,fDll ds ysaFk ds Òhrj) ds Òhrj fdlh fcUnq ij Ãv¨] ,eihà ysaFk estjesaV dh f=vk;keh vf/kdre vuqes;
=qfV (1-7+L@800)µm (tgk¡ L feeh- esa ekfir yEckà gS) ds cjkcj vFkok mlls de (csgrj) g¨A
rduhdh fVIi.kh% vkÃ,lv¨ 10360&2(2009) ds vuqlkj fofuÆn"V lh,e,e ds lokZf/kd ,D;jw sV dfUQxjs'ku16 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
dh Ãv¨] ,eihà fofuekZrk }kjk (mnkgj.k ds fy,] fuEufyf[kr dk lo¨ZŸke% ç¨c LVkbYl ysaFk] e¨'ku iSjkehVlZ]
,uok;juesaV) miyC/k lÒh dEilsa s'kul ds lkFk 1-7+,y@800µm Fkzs'k¨YM ls rqyuk dh tk,xhA
[k- yhfu;j fMLIyslesaV estÇjx bLa VªwesaV~l] bl çdkj gSa%
1- ukWu dkWUVSDV Vkbi estÇjx flLVEl ftldk "jst¨yq'ku" 0-2 feeh- rd ds estÇjx jsat ds Òhrj 0-2 µm
ds cjkcj ;k blls csgrj (de) g¨;
2- yhfu;j osfj,cy fMÝsaf'k;y Vªkla QkeZj (,yohMhVh) flLVEl ftuesa fuEufyf[kr n¨u¨a fo'ks"krk,¡ g¨a%
d- 1- ,yohMhVh ds fy, 5feeh- rd ds vkWifjÇVx jsat ds lkFk yhfu;fjVh 0 ls iw.kZ vkWijsÇVx jsat rd ekfir
0-1 çfr'kr ds cjkcj vFkok mlls de (csgrj) g¨xh; vFkok
2- ,yohMhVh ds fy, 5feeh- ls vf/kd ds vkWifjÇVx jsat ds lkFk yhfu;fjVh 0 ls iw.kZ vkWijsÇVx jsat rd
ekfir 0-1 çfr'kr ds cjkcj vFkok mlls de (csgrj) g¨xh; v©j
[k- fMª¶V ekud ,fEc;aV ijh{k.k d{k rkieku +1K ij 0-1 çfr'kr çfrfnu ds cjkcj vFkok csgrj (de);
3- estÇjx flLVEl ftlesa fuEufyf[kr n¨u¨a fo'ks"krk,¡ g¨a:
d- ,d ystj; rFkk
[k- ekud rkieku v©j ekud ncko ds vklikl +ds ds rkieku jsat ij de ls de 12 ÄUVs ds fy, j[ksa:
1- 0-1 vFkok csgrj ds iw.kZ Ldsy ij ,d "jstksyq'ku"; rFkk
2- (0-2+L@2000)µm (L feyhehVj esa ekfir yEckà gS) ds cjkcj vFkok blls csgrj (de) estjesaV
vulV¢ZUVh ds lkFk;
ffffVVVVIIIIiiii....kkkkhhhh%%%% en 1[k3[k3 ds rgr ekiu bUVjQsj¨ehVj flLVe d¨ fu;af=r ugÈ djrk t¨ [kqyh vFkok cUn ywi
QhMcSd ds fcuk] ftlesa e'khu VwYl ds LykbM eow eSaV n¨"k¨a d¨ ekius ds fy, ystj Mk;esU'kuy bULiSD'ku
e'khusa] ;k ,sls gh midj.k fufgr g¨r gSaA
rduhdh fVIi.kh% en 1[k3[k esa 'fyfu;j fMLiysleSaV' dk vFkZ gS ekiu ç¨c v©j ekid vkWCtsDV ds chp nwjh
dk ifjorZuA
x- ,Uxqyj fMLIysleSUV estÇjx bULVªwesaV~l ftlesa ,Uxqyj i¨th'ku Msfo,'ku 0-00025 fMxhz ds cjkcj
vFkok csgrj (de) g¨A
fVIi.kh%& en 1[k3x vkfIVdy midj.k¨a tSls vkV¨ d¨yhesVlZ d¨ fu;af=r ugÈ djrh ftuesa niZ.k ds
d¨.kh; foLFkkiu dh tk¡p ds fy, d¨yhesfVM ykbV (mnkgj.k% ystj ykÃV) dk ç;¨x fd;k x;k gSA
Ä- gseh&'kSYl dh ledkfyd yhfu;j&,xwyj tk¡p gsrq çfØ;k ftlesa fuEufyf[kr n¨u¨a fo'ks"krk,¡ gSa:&
1- 3-5 µm çfr 5,e,e ds cjkcj ;k csgrj de fdlh yhfu;j ,fDll lfgr eki vfuf'prrk] v©j
2- 0-02 fMxzh ds cjkcj ;k de d¨.kh; fLFkfr fopyuA
fVIi.kh%& 1- en 1[k3 es os e'khu v©tkj 'kkfey gSa ftUgsa eki e'khu ds :i esa mi;¨x fd;k tk ldrk gS
v©j ;fn os eki e'khu dk;Z gsrq fu/kkZfjr ekin.M d¨ ijw k djrs g¨a ;k mlls csgrj g¨aA
2- en la- 1[k3 es foÆ.kr e'khusa fu;af=r gSa ;fn os viuh çpkyu {kerk ds Òhrj çkjafÒd fofuÆn"V lhek ls
vf/kd gSaA
rduhdh fVIi.kh% bl en esa eki ewY;¨a ds lÒh ekun.M tek@ÄVk] n'kkZrs gSa vFkkZr dqy cSaM ugÈA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 17
4d004 dUVª¨YM ,Ve¨lQs;j (oSD;we ;k muVZ xSl) bUMD'ku Qu¢Zfll] v©j mldh fo|qr vkiwÆr fuEukuqlkj gS%
d- ÒfV~V;¨a es fuEufyf[kr lÒh fo'ks"krk,¡&
1- 1123 ds 850 fMxzh ls- ls vf/kd rkieku ij dk;Z djus esa leFkZA
2- bUMD'ku dkW;Yl O;kl esa 600 feeh- ;k de] v©j
3- 5 fd-ok- ;k vf/kd fo|qr buiqV gsrq rS;kj
fVIi.kh% lsfedUMDVj osQlZ ds lla k/ku gsrq rS;kj ÒfV~V;¨a d¨ en 4d004d
fu;af=r ugÈ djrh gSA
[k- en 4d004d esa fofuÆn"V ÒfV~V;¨a gsrq fo'ks"k :i ls rS;kj 5 fd-ok- ;k vf/kd dh fofuÆn"V vkmViqV
ikoj lfgr fo|qr vkiwÆrA
4d005 'vkbl¨LVsfVd çsfll' v©j lacaf/kr miLdj fuEukuqlkj gS%&
d- 5d208 es ;FkkfofuÆn"V vkbl¨LVsfVd çsfll
[k- en 4d005d esa fofuÆn"V 'vkbl¨LVsfVd çsfll' gsrq fo'ks"k :i ls rS;kj MkÃt] e¨YMl v©j fu;a=d d¨
fu;af=r djrk gSA
rduhdh fVIif.k;k¡&
1- en 4d005 esa 'vkbl¨LVsfVd çsfll' dk vFkZ fofÒUu ekè;e¨a (xSl] nzO;] B¨l d.k¨a] vkfn) ds tfj, cUn
dsfoVh ij ncko cukus esa leFkZ miLdj ls gS rkfd dsfoVh ds Òhrj dk;Z lkexzh ijlÒh fn'kkv¨a esa leku
ncko mRiUu dj ldsA
2- en 4d005 esa çd¨"B dk vkUrfjd ifjek.k ml çd¨"B dk gS ftlesa n¨u¨a dk;Z rkieku v©j dk;Z ncko
çkIr g¨ tkrs gSa v©j blesa fQDlpZ 'kkfey ugÈ gSaA mDr ifjek.k ;k r¨ ncko çd¨"B ds vkUrfjd O;kl ls
N¨Vk g¨xk ;g bl ij fuÒZj djrk gS fd n¨uksa çd¨"B¨a es ls og fdlds Òhrj fLFkr gSA
4d006 okbczs'ku VsLV ç.kkfy;¨a] miLdj v©j laÄVd fuEukulkj gS%
d- bysDVª¨Mk;ukfed okbczs'ku VsLV ç.kkfy;k¡ ftlesa fuEufyf[kr lÒh fo'ks"krk,¡ gSa :&
1- QhMcSd ;k Dy¨TM ywi fu;=a d rduhd d¨ dke esa yxkuk v©j fMthVy
dUVª¨y ;wfuV d¨ 'kkfey djuk;
2- 20 v©j 2000 gVZt ds chp 10th vkj,e,l ij okbczs'ku esa leFkZ; v©j
3- 50 ds,u ;k vf/kd eki 'cs;j Vsoy' çnku djus esa leFkZ;
[k- fMftVy dUVª¨y ;wfuVsa] okbczs'ku tk¡p gsrq fo'ks"k :i ls rS;kj lk¶Vos;j lfgr 5 fd-gk- ls vf/kd
okLrfod le; cSaM foM~Fk lfgr v©j en 4d006d esa fofuÆn"V ç.kkyh gsrq rS;kj]
x- okbczs'ku FkzLVlZ 'ksdj ;wfuVsa] ,l¨fl,fVM ,Eiyhi'k;lZ lfgr ;k jfgr] 50 ds,u ;k vf/kd eki ds 'cs;j
Vscy' çnku djus esa leFkZ] ftudk en 4d006d esa fofuÆn"V ç.kkfy;¨a ds fy, ç;¨x fd;k tkrk gSA
Ä- VSLV ihl Li¨VZ LVªDplZ v©j bysDVªkfud ;wfuVsa ftUgsa eYVhiy 'ksdj ;wfuV¨a d¨ t¨M+dj ,d laiw.kZ 'ksdj
ç.kkyh cukus ds fy, rS;kj fd;k x;k gSA t¨ 50 ds,u ;k vf/kd] 'eki cs;j VScy' dh çÒkoh la;¨ftr cy
çnku djus esa leFkZ gS v©j ftudk en 4d006d esa fofuÆn"V ç.kkfy;¨a ds fy, ç;¨x fd;k tkldrk gSA
rduhdh fVIi.kh%
en 4d006 esa 'cs;j Vscy' dk vFkZ ,d likV ry ;k lrg ls gS fQDlplZ ;k fQÇVXl jfgrA18 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
4d007 oSD;we ;k vU; fu;af=r ,ee¨LQs;j esVkythZdy esÇYVx v©jdkÇLVx Qu¢Zfll v©j lacaf/kr miLdj fuEukulq kj
gS%&
d- fuEufyf[kr n¨u¨a fo'ks"krkv¨a okys vkdZ jh&esYV v©j dkÇLVx Qu¢Zfll%
1- 1000 v©j 20000 Äu ls-eh- ds chp {kerk ds miÒ¨T; bysDVª¨M] v©j
2- 1973 ds (1700fMxzh ls-) ls vf/kd esfYVax rkieku lfgr lapkyu esa l{ke]
[k- fuEufyf[kr n¨u¨a fo'ks"krkv¨a okys bysDVªku che esÇYVx Qu¢Zfll v©j Iyktek ,V¨ekbts'ku v©j esÇYVx
Qu¢Zfll]
1- 50 ds MCY;w ;k vf/kd dh ikoj v©j
2- 1473 ds (1200 fMxzh ls-) ls vf/kd esfYVax rkieku lfgr çpkyu esa l{ke]
x- en 4d007d ;k 4d007[k es fofuÆn"V fdlh Òh Qu¢Zl gsrq fo'ks"k :i ls lekuq:i dEI;wVj fu;a=.k v©j
fuxjkuh ç.kkfy;k¡
4d008 fuEukuqlkj fyfDoM ,VhukbM esVYl ds fy, çfrj¨/kh lkexzh ls cus Ølw hcYl%
d- fuEufy[r n¨u¨a fo'ks"krkv¨a okysØlw hdYl%
1- 150 Äu lseh- (150 ,e,y) v©j 8000 Äu lseh- (8yh-) ds chp okY;we] v©j
2- Òkj esa 98 çfr'kr ;k vf/kd 'kq)rk okys fuEufyf[kr esa ls fdlh lkefxz;¨a ls
vFkok fuEufyf[kr lkefxz;¨a ds la;¨tu ls cus v©j d¨fVM ftudh lexz
v'kq)rk LrjÒkj dk 2 çfr'kr vFkok de g¨
d- dSfY'k;e ¶y¨jkÃM (lh,,Q2);
[k- dSfY'k;e ftjd¨usV (esVkth Ld¨usV) (lh,tsMvkjv¨3);
x- lhfj;e lYQkbM (lhÃ@,l3);
Ä- ,jfc;e vkDlkbM ,jfc;k (Ãvkj2 v¨3);
M- gs¶uh;e vkDlkbM gsQfu;k (,p,ilv¨2);
p- eSXuhf'k;e vkDlkbM (,ethv¨);
N- ukbVªkbMsM fuv¨fc;e&VkÃVsfu;e&VaXlVu vykW; yxÒx 50 çfr'kr
,uch] 30 çfr'kr (VhvkÃ] 20 çfr'kr MCY;w);
t- ;=h;e vkDlkbM (;=h;k) (okÃ2 v¨3); ;k
>- ftjd¨fu;e vkDlkbM (ftjd¨fu;k) (tsM vkj v¨2);
[k- fuEufyf[kr n¨u¨a fo'ks"krkv¨a okys Ølw hcYl
1- 50 Äu ls-eh- (50 ,e,y) v©j 2000 ls-eh-3 (2yh-) ds chp okY;we] v©j
2- Òkj esa 99-9 çfr'kr ;k vf/kd 'kq)rk okys fuEufyf[kr fdlh lkefxz;¨a ls
d¨fVM ;k cus%
x- fuEufyf[kr lÒh fo'ks"krkv¨a okys Ølw hcYl
1- 50 Äu ls-eh-3 (50 ,e,y) v©j 2000 ls-eh-3 (2yh-) ds chp okY;we] v©j
2- Òkj esa 98 çfr'kr ;k vf/kd 'kq)rk okys fuEufyf[kr fdlh lkefxz;¨a ls
cus ;k ykMsUM v©j
3- VSUVsye dkckZbM] ukbVªkbM] c¨jkbM ls d¨fVM ;k mudk d¨Ã la;¨tuA
4d009 gSoh okVj ls VªhfV;e dh olwyh ;k gSoh okVj ds mRikn gsrq gkbMª¨tu v©j okVj ds chp gkbMª¨tu vkbl¨V¨i
,Dlpsat çfrfØ;k dk c<+kok nsus ds fy, fo'ks"k :i ls cuk, x, ;k rS;kj IysVhukbTM dSVkfyLVA
4d010 fuEufyf[kr n¨u¨a fo'ks"krkv¨a okys VÓwc ds :i es dEi¨ftV lja puk,¡&
d- 75 v©j 400 ,e,e ds chp vkUrfjd O;kl ds] v©j
[k- en 3d116 es fofuÆn"V fdlh Òh lkexzh ls cusA
4d011 fuEufyf[kr lÒh fo'ks"krkv¨a okys ÝhDosUlh psatlZ ;k tujsVlZ% t¨ ifjorZu'khy fÝDosalh vFkok fu/kkZfjr
fÝDosalh e¨Vj MªkÃo ds fy, mi;¨T; gSA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 19
uksV&1% xsl lsfUVª¶;wt izfØ;k gsrq fo'ks"k :Ik ls fMtkbu vFkok rS;kj fd, x, fÝDolsa h psUtlZ vFkok tsusjsVlZ dks
fu/kkZfjr miLdj ¼0 [k½ ds varxZr fu;af=r fd;k tkrk gSA
uksV&2% fuEufyf[kr fo'ks"krkvksa ds iz;kstu gsrq fÝDolsa h psUtlZ vFkok tsusjsVlZ dh {kerk c<k+us vkSj fu"iknu gsrq fo'ks"k :Ik
ls **lk¶Vos;j** fMtkbu fd, x, ¼en 4x dks ns[ksa½
d- 40 ok- ;k vf/kd dh ikoj miyC/k djkus esa l{ke eYVhQsl vkmViqV]
[k- 600 gVZt vkSj vf/kd ÝhDosla h ds chp izpkyu esa l{ke]
x- 0-2 izfr'kr ls vf/kd ¼de½ ÝhDolsa h dUVªksyA
fVIif.k;k¡%
1- en 4d011 dsoy fof'k"V vkS|ksfxd e'khujh vkSj@vFkok miHkksDrk oLrqvksa ¼e'khu Vwy] okguksa
bR;kfn½ ds fy, vfHkizsr ÝhDosalh psUtlZ dks fu;af=r djrk gS ;fn ÝhDolsa h psUtlZ dks gVkus ij
mi;qZDr fo'ks"krkvksa dks dk;kZfUor fd;k tk ldrk gSA
2- fu;kZr fu;a=.k ds iz;kstu gsrq ljdkj gkMZos;j vkSj lk¶Vos;j vojks/kksa dks /;ku esa j[krs gq, ;g
irk yxk,xh fd ,d fo'ks"k ÝhDolsa h pktZj mi;qZDr fo'ks"krkvksa dks ijw k djrk gSA
rduhdh fVIi.kh%
1- en 4d011 esa ÝhDolsa h psUtlZ dks dUoVZlZ ;k bUoVZlZ Hkh dgk tkrk gSA
2- en 4d011 esa mfYyf[kr fo'ks"krkvksa dks dqN miLdjksa }kjk dk;kZfUor fd;k tk ldrk gS tSls&
tsujsVlZ] bysDVªkfud ijh{k.k miLdj] , lh ikoj vkiwfrZ;ka] ifjorZu'khy LihM eksVj Mªkbo]
ifjorZu'khy LihM Mªkbo ¼oh,lMh½] ifjorZu'khy ÝhDolsa h Mªkbo ¼oh,QMh½] ,MtLVscy ÝhDosalh
Mªkbo ¼,,QMh½ vFkok ,MtLVscy LihM Mªkbo ¼,,lMh½A
4d012 fuEufyf[kr ystlZ] ystj ,EiyhQk;lZ vkSj vkslhysVlZ%
d- fuEufyf[kr nksuksa fo'ks"krkvksa okys dkij osij ystlZ%
1- 500 vkSj 600 ,u-,e- osoySUFk ds chp pyus okys] vkSj
2- 40 okV ds led{k ;k vf/kd vkSlr vkmViqV ikoj]
[k- fuEufyf[kr nksuksa fo'ks"krkvksa okys ,jxku vkW;u ystlZ%
1- 400 vkSj 515 ,u-,e- osoySUFk ds chp pyus okys] vkSj
2- 40 okV ds led{k ;k vf/kd vkSlr vkmViqV ikoj]
x- fuEufyf[kr esa ls ,d 1000 vkSj 1100 ,u-,e- ds chp vkmViqV osoySUFk lfgr fuvksMkbfe;e&MksIM
¼Xykl ds vykok½ ytlZ%
1- fuEufyf[kr esa ls ,d vkSj 1 ,u,l ds leku ;k vf/kd iYl M~;jw s'ku ds ikl iYl&,DlkbVsM
vkSj D;w&fLoPM%
d- 40 okV ls vf/kd vkSlr vkmViqV ikoj lfgr ,d flaxy VªkalolZ eksM vkmViqV] ;k
[k- 50 okV ls vf/kd vkSlr vkmViqV ikoj lfgr ,d eYVhiy&Vªkla olZ] ;k
2- 40 okV ls vf/kd vkSlr vkmViqV ikoj lfgr 500 vkSj 550 ,u,e ds chp vkmViqV osoySUFk
nsus ds fy, ÝhDosalh nksxquh djus ds fy,]
?k- fuEufyf[kr lHkh fo'ks"krkvksa okys V~;wuscy iYlM flaxy eksM Mkbystj vkslhysVlZ%
1- 300 vkSj 800 ,u,e osoySaXFk ds chp izpkfyr]
2- 1 okV ls vf/kd vkSlr vkmViqV ikoj]
3- 1 fd- gk- ls vf/kd jsisVh’ku jsV] vkSj
4- 100 ,u,l ls de iYl foM~Fk]
M- fuEufyf[kr lHkh fo'ks"krkvksa okys V~;wuscy iYlM Mkbystj ,EiyhQk;lZ vkSj vkslhysVlZ%
1- 300 vkSj 800 ,u,e osoySaXFk ds chp izpkfyr]
2- 30 okV ls vf/kd vkSlr vkmViqV ikoj]20 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
3- 1 fd- gk- ls vf/kd jsisVh'ku jsV] vkSj
4- 100 ,u,l ls de iYl foM~Fk]
fVIi.kh% en 4d012M- flaxy eksM vkslhysVlZ dks fu;af=r ugha djrh gSA
p- fuEufyf[kr lHkh fo'ks"krkvksa okys vysDtsUMªkbV ystlZ%
1- 720 vkSj 800 ,u,e ds chp osoySaXFk ij izpkfyr]
2- 0-005 ,u,e ;k de cSaMfoM~Fk]
3- 125 gVZt ls vf/kd jsisVh'ku jsV] vkSj
4- 30 okV ls vf/kd vkSlr vkmViqV ikoj]
N- fuEufyf[kr lHkh fo'ks"krkvksa okys iYlM dkcZu MkbZvkDlkbM ystlZ%
1- 9000 vkSj 11000 ,u,e osoySaXFk ij izpkfyr]
2- 250 gVZt ls vf/kd jsisVh'ku jsV]
3- 500 okV ls vf/kd vkSlr vkmViqV ikoj] vkSj
4- 200 ,u,l ls de iYl foM~FkA
fVIi.kh% en 4d012N dfVax vkSj osfYMax mi;ksx gq, vf/kd ikoj ¼fo'ks"k :Ik ls 1 ls 5 fd- okV½
vkS|ksfxd lhvks2 ystlZ D;ksafd ;g ysVj ystlZ ;k rks dUVhU;wvl oso gS ;k 200 ,u,l ls de iYl
foM~Fk ds lkFk iYl fd, gq, gSaA
t- fuEufyf[kr lHkh fo'ks"krkvksa okys iYlM ,Dtkbej ystlZ%
¼,DlbZ,Q] ,DlbZlhvkbZ] dsvkj,Q½%
1- 240 vkSj 360 ,u,e osoySaXFk ij izpkfyr]
2- 250 gVZt ls vf/kd jsisVh'ku jsV] vkSj
3- 500 okV ls vf/kd vkSlr vkmViqV ikoj]
>- iSjk&gkbMªkstu jeu f'k¶VlZ ftUgsa 16 ;w,e vkmViqV osoySaXFk ij vkSj 250 gVZt ls vf/kd jsisVh'ku jsV
ij pyus ds fy, fMtkbu fd;k x;k gSA
.k- fuEufyf[kr lHkh fo'ks"krkvksa okys iYlM ,Dtkbej ystlZ%
1- 500 ls 600 ,u,e osoySaXFk ij izpkfyr gksus okys
2- 250 gVZt ls vf/kd jsisVh'ku nj okys
3- 200 okV ls vf/kd vkSlr vkmViqV ikoj] vkSj
4- 200 ,u,l ls de iYl foM~FkA
fVIi.kh& en 4d012.k mPprj fo|qr ¼1 ls 5 fd-ok-½ dks fu;af=r ugha djrkA vkS|ksfxd lhvks ystj
dfVax rFkk osfYMax vuqiz;ksxksa esa iz;qDr gksrs gSa] D;ksafd ckn ds ystj ;k rks fujra j rjafxr gksrs gSa ;k
mudh 200 ls vf/kd iYl foM~Fk gksrh gSaA
4d013 fuEufyf[kr lHkh fo'ks"krkvksa okys okYo
d- 5 eh-eh- ;k vf/kd vkdkj dsA
[k- osykslhy okys] vkSj
x- Hkkj esa 60 izfr’kr ls vf/kd fudy ls iw.kZ:Ik ls cus ;k ,Y;wehfu;e] ,Y;wehfu;e vyk;] fudy
;k fudy vyk; dh ykbu ds lkFkA
rduhdh fVIi.kh% fHkUu bUysV vkSj vkmVysV O;kl esa okYo ds fy, en
4d013d esa ukfed vkdkj ekun.M NksVs ls NksVs O;kl ls lUnfHkZr gSA
4d014 fuEufyf[kr lHkh fo'ks"krkvksa okys lqijdaMfDVax lksysuksbMy bysDVªksesXusV~l%
d- 2 Vh ls vf/kd esXusfVd QhYM~l mRiUu djus esa l{ke]¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 21
[k- vkUrfjd O;kl dh yEckbZ dk vkSlr 2 ls vf/kd]
x- vkUrfjd O;kl 300 fe-eh- ls vf/kd] vkSj
?k- vkUrfjd okY;we ds dsUnzh; 50 izfr'kr ls vf/kd 1 izfr'kr csgrj esXusfVd QhYM ;wuhQkeZA
fVIi.kh% en 4d014 mu eSXusV~l dks fu;af=r ugha djrh gS ftUgsa fo'ks"k :Ik ls fMtkbu fd;k x;k gS vkSj
esMhdy U;wfDy;j esXusfVd jstksusUl ¼,u,evkj½ besftax flLVEl ds Hkkx ds :Ik esa fu;kZr fd;k x;k gS
¼*mlds Hkkx dk :i* dk vFkZ vko';d :Ik ls ugha gS fd leku iksrynku esa okLrfod Hkkx 1 fofHkUu
lzksrksa ls vyx&vyx iksrynku vuqer gSa c’krsZ fd lEcaf/kr fu;kZr nLrkostksa esa Li"V :Ik ls *ds Hkkx ds
:Ik esa* laca/k dk mYys[k gksA
4d015 fuEufyf[kr nksuksa fo'ks"krkvksa okyh gkbZ ikoj MkbjsDV djsUV ikoj vkiwfrZ;ka&
d- 8 ?k.Vksa dh le;kof/k ls T;knk esa 500d ;k vf/kd dh djsUV vkmViqV ds lkFk] 100 oksYV ;k
vf/kd] lrr mRiknu esa leFkZ] vkSj
[k- 8 ?k.Vksa dh le;kof/k ls T;knk esa 0-1 izfr'kr ls csgrj djsUV ;k oksYVst LFkkfiRoA
4d016 fuEufyf[kr nksuksa fo'ks"krkvksa okyh gkbZ&oksYVst MkbjsDV djsUV ikoj vkiwfrZ;ka&
d- 8 ?k.Vksa dh le;kof/k ls T;knk esa 1, ;k vf/kd ds djsUV vkmViqV ds lkFk] 20 dsoh ;k vf/kd]
lrr mRiknu esa leFkZ] vkSj
[k- 8 ?k.Vksa dh le;kof/k ls T;knk esa 0-1 izfr’kr ls csgrj djsUV ;k oksYVst LFkkfiRoA
4d017 iw.kZ ncko dks ekius esa l{ke vkSj 4d016 fuEufyf[kr nksuksa fo'ks"krkvksa okys izs’kj Vªkla M~;lw lZ%
d- Hkkj esa 60 izfr'kr ls vf/kd fudy okys ,Y;wehfu;e] ,Y;wehfu;e vyk;] ,Y;wehfu;e vkWDlkbM ¼,Y;wehuk
vFkok lsQk;j½ fudy ;k fudy vyk; ls cus ;k lja f{kr izs'kj lsfUlax ,fyesUV~l% vkSj
[k- izs’kj lsfUlax ,fyesUV~l dh flfyax ds fy, vko';d lhy ;fn dksbZ gks] tks izkslsl fefM;e ls lh/ks lEidZ
esa gks tks ,Y;wehfu;e] ,Y;wehfu;e vyk;] ,Y;wehfu;e vkWDlkbM ¼,Y;wehuk vFkok lsQk;j½ fudy] fudy
vyk; ls cuk ;k lajf{kr gks] ftlesa mlds Hkkj dk 60 izfr’kr fudy gks vFkok ftlls iw.kZ DyksfVusfVM
gkbMªksdkcZu ikyhej gks rFkk
x- fuEufyf[kr fdlh ,d fo'ks"krk okys%
1- 13 dsih, ls de dk Qqy Ldsy vkSj Qqy Lds ds 1 izfr'kr ls $ dh csgrj ,D;jw slh okys] ;k
2- 13 dsih, ;k vf/kd dk Qqy Ldsy vkSj 130 ih, $ dh csgrj ,D;jw slh okysA
rduhdh fVIif.k;k¡&
1- en 4d017 esa izs’kj VªkUlM~;lw lZ os;Ut gSa tks izs’kj estjesaV dks bysDVªhdy flxuy esa cnyrs gSaA
2- en 4d017 esa ,D;wjslh esa 'kkfey gS ,Ech;UV rkieku ij uku&yhfu;fjVh] fgLVsjsfll vkSj fjihVSfcyhVhA
4d018 fuEufyf[kr lHkh fo'ks"krkvksa okys oSD;we iEIl%
d- 380 fe-eh- ds led{k ;k vf/kd vkdkj ds buiqV FkzksV]
[k- 15 ,e3@,l] ds led{k ;k vf/kd dh ifEiax LihM] vkSj
x- 13-3 ,eih, ls vf/kd vYVhesV oSD;we iSnk djus esa l{keA
rduhdh fVIif.k;k¡&
1- ukbVªkstu xSl ;k ok;q ds lkFk estjesaV IokbUV ij ifEiax LihM fu/kkZfjr dh tkrh gSA
2- iEi CykDM vkQ ds buiqV ds lkFk iEi ds buiqV ij vYVhesV oSD;we fu/kkZfjr fd;k tkrk gSA
4d019 izfr?kaVk 250 xzk- ¶yksjhu ls vf/kd vkmViqV {kerk lfgr ¶yksjhu mRiknu gsrq bysDVªksyhfVd lsYlA
4d020 fuEukuqlkj jksVj Qsczhd'ku ;k vlsEcyh bfDoiesaV] jksVj LVsªVfuax bfDoiesaV] csykst&QksfeZx esUMªsYl vkSj
MkbZt%
d- xSl lsUVªh¶;wt jksVj V~;wc lsD'kUl] csQYl vkSj ,.M dSIl dh vlsEcyh ds fy, jksVj vlsEcyh bfDoiesaVA
fVIi.kh% en 4d020d esa 'kkfey izlhtu esUMªYl] dySEil vkSj fJad fQV e’khusaA
[k- dkeu ,fDll ds fy, xSl lsUVªh¶;wt jksVj V~;wc lsD’kUl dh ,ykbuesaV gsrq jksVj LVªsVfuax bfDoiesaV]22 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
rduhdh fVIi.kh% en 4d020[k esa ,sls miLdj esa lkekU; :Ik ls izlhtu eStfjax izksCl vkrs gSa tks
dEI;wVj ls tqM+s gksrs gSa vkSj ckn esa mlds ,D'ku dks fu;af=r djrs gSa] mnkgj.kkFkZ jksVj V~;wc lsD'kUl dks
,ykbu djus ds fy, mi;ksx gksus okys U;wesfVd jsElA
x- csykst&QksfeZax esUMªsYl vkSj flaxy&dUoksY;w'ku osykst ds mRiknu ds fy, MkbtA
rduhdh fVIi.kh% en 4d020x esa lanfHkZr csykst esa fuEufyf[kr lHkh fo'ks"krk,a gSa&
1- vkUrfjd O;kl 75 vkSj 400 fe-eh- ds chp(
2- yEckbZ 12-7 fe-eh- ds cjkcj ;k vf/kd(
3- flaxy dUoksY;w'ku MsIFk 2 fe-eh ls vf/kd( vkSj
4- vkbZ LVsªaXFk ,Y;wehfu;e vykW;t] ejkftax LVhy] ;k gkbZ LVsªaXFk Qkbczl ;k fQykesUVjh eSVhfj;yA
4d021 fuEukuqlkj lsUVªh¶;wxy eYVh&Iysu cSysflax e'khUl] fQDlM ;k iksVZsCky] gksjhtksUVy ;k ofVZdy(
d- 600 fe-eh ;k vf/kd dh yEckbZ vkSj fuEufyf[kr lHkh fo fo'ks"krkvksa okys cSysfUlax QysfDlcy jksVlZ ds
fy, fMtkbu dh xbZ lsUVªh¶;wxy cSysaflax e'khUl%
1- fLoax ;k tuZy O;kl 75 fe-eh- ls vf/kd
2- 0-9 ls 23 fdxzk- dh ekl dsikfcfyVh( vkSj
3- 5000 vkjih,e ls vf/kd jsoksY;w'ku dh cSysflax LihM dh {kerk vkSj
[k- gkSyks lhfyfUMªdy jksVj la?kVdksa ds cSysUl ds fy, fMtkbu dh dbZ vkSj fuEufyf[kr lHkh fo'ks"krkvksa
okyh lsUVªh¶;wxy cSysfLkax e’khu%
1- tujy O;kl 75 fe-eh- ls vf/kd
2- ekl {kerk 0-9 ls 23 fdxzk-(
3- izfr Iysu 0-010 fdxzk-Øfeeh-@fdxzk- ds cjkcj ;k de jsthM~;wvy bucSysUl dks cSysUl djus esa
leFkZ( vkSj
4- csYV Mªkbo VkbiA
4d022 fuEufyf[kr vuqlkj fQykesaV okbafMax e'khu vkSj lEcfU/kr miLdj%
d- 55d 206 esa ;Fkk fofufnZ"V fQykesaV okbfUMax e'khu vkSj fuEufyf[kr lHkh fo'ks"krkvksa okyh%&
1- nks ;k vf/kd ,fDll esa iksth'kfuax] jSfiax vkSj okbafMax QkbclZ dksvktZcsfVM vkSj izksxkzEM
2- dEiksftV LVªDplZ dks cukus ds fy, fo'ks"k :Ik ls fMtkbu fd, x, vFkok *QkbclZ vFkok
fQykesaVªh eSfVjh;Yl* ls ysfeusV~l( vkSj
3- 75 vkSj 650 ,e,e ds chp ds vkra fjd O;kl vkSj 300 ,e,e ;k vf/kd ds lkFk flysaMjhdr`
V~;wCl dks cka/kus dh {kerkA
[k- en 4d022d esa fofufnZ"V fQykesaV okbfUMax e'khuksa gsrq dksvkfMZusfVax vkSj izksxzkfeax dUVªksy(
x- en 4 d022d esa fofufnZ"V fQykesaV okbfUMax e'khu ds fy, izslhtu esUMªsYlA
4d023 50 ,e, ;k vf/kd VksVy vk;u che djsUV miyC/k djkus ds fy, flaxy ;k eYVhiy vk;ku lksfllZ ls
lfTtr] ds fy, fMtkbu bysDVªksesXusfVd vkblksVksi lsijsVlZA
fVIif.k;k¡&
1- en 4d023 esa 'kkfey gSa LVscy vkblksVksIl ds lkFk&lkFk ;jw sfu;e ,ukfjfpax esa l{ke lsijsVlZA
2- ,d lsijsVj tks ,d ekl ;wfuV vUrj ds lkFk ysM ds vkblksVksIl dks vyx djus esa l{ke gS og
Fkzh ;wfuV ekl vUrj ds lkFk ;wjsfu;e ds vkblksVksIl ,ufjp djus esa l{ke gSA
3- en 4d023 esa vk;u lksflZl lfgr lsijsVlZ vkSj dysDVlZ eSXusfVd QhYM vkSj dksUQhxjq s’kUl esa
vkus okys nksuksa 'kkfey gSa ftuesa os QhYM ds fy, ckgjh gSaA
rduhdh fVIi.kh% ,d flaxy 50 ,e, vk;u lkslZ uspQjy ,cuMsUl QhM ls izfr o"kZ 3 xzk- ls vf/kd
lsikjsfVM gkbyh ,ufjPM ;wjsfu;e ¼,pbZ;w½ dk mRiknu ugha dj ldrkA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 23
4d024 230 ,Vksfed ekl ;wfuV~l ;k vf/kd ds vk;Ul dks ekius esa l{ke ekl LisDVªksehVlZ vkSj 230 esa 2 Hkkxksa
ls vf/kd jstksY;w’ku okys] fuEukuqlkj] vkSj mlds vk;u lksflZl%
fVIi.kh %& ;wjsfu;e gsDlk¶yjw kbM ds vkWu ykbu uewuksa dk fo'ys"k.k djus ds fy, fo'ks"k :Ik ls fMtkbu
fd, x, vFkok rS;kj fd, x, ekl LisDVªksehVlZ fu/kkZfjr miLdj ¼0 ch Js.kh½ ds rgr fu;af=r fd, tkrs
gSaA
d- baMfDVoyh diYM IykTek ekl LisDVªksehVlZ ¼vkbZlhih@,e,l½(
[k- Xyks fMLpktZ ekl LisDVªksehVlZ ¼thMh,e,l½(
x- FkeZy vk;ukbts’ku ekl LisDVªksehVlZ ¼VhvkbZ,e,l½(
?k- bysDVªku ckEckMZesaV ekl LisDVªksehVlZ ftuesa fuEu esa ls nksuksa fo”ks"krk,a gksa%&
1- ,d eksyhD;wyj che buySV flLVe tks fd vk;u lkslZ ds {ks= esa ,d dksyhesfVM che vkWQ
,ukykbV eksyhD;wYkl dks batsDV djrk gS tgka ij eksyhD;wyl ,d bySDVªku che ds }kjk
vk;uhd`r gksrh gSa( vkSj
2- ,d ;k vf/kd dksYM VSªIl tks fd 193 ds ¼&80aaaaaaaaaaaaaa ls-½ vFkok de rkiØe ij BaMs fd, tk ldrs gSa
rkfd os ,ukykbV eksyhD;wYl dks Vªsi dj ldsa tks fd bySDVªku che ds }kjk vk;uhdr` ugha gksrs
gSaA
M- ekl LisDVªksehVlZ tks fd ekbØks&Iyjw ksus’ku vk;u lzksr ds lqlfTtr gksr gSa ftUgsa ,DVhukbZM~l ;k
,DVhukbZM ¶ywjkbM~l ds fy, cuk;k tkrk gSA
Rkduhdh fVIif.k;k¡&
1- ,d lzksr pSacj tksfd ,sls inkFkksZa tks fd ;w,Q6 ds izfrjks/kh gksr gSa] ls cuk gS] iafDrc) gksrk gS
;k IysfVM gksrk gSA
2- en 4d024?k esa bysDVªku ckseckMZesaV ekl LisDVªksehVj dks bySDVªku bEisDV ekl LisDVªksehVj
vFkok bysDVªku vk;ksukbts’ku ekl LisDVªksehVj ds :Ik esa Hkh tkuk tkrk gSA
3- en 4d024-?k-2 esa] ,d *dksYM VªSi* ,d midj.k gksrk gS tks fd xSl eksY;wdwYl dks dksYM lRkgksa
ij dSUMsUl vFkok Ýht djrs gq, VªSi djrk gSA bl izfof"V ds iz;kstuksa ds fy,] ,d DyksTMyi
xSfl;l ghfy;e Øk;kstsfud osD;we iEi ,d dksYM VªSi ugha gSA
4d025 fo'ks"khd`r iSfdax tks fd xq:ty dks lk/kkj.k ty ls vyx djus ds dke esa vkrh gS ftlesa ;s nks xq.k gksa
%&
d- osVsfcfyVh dks lq/kkjus ds fy, ;g dSfedyh fVªVhM QkWLQj czkat eS’k ls cuk gS vkSj
[k- oSD;we fMLVsys'ku VkWolZ esa iz;ksx djus ds fy, fMtkbu dh tkrh gSA
4d026 mRizsjdksa ds e/; rjy veksfu;k ¼ds,u,p2@,u,p3½ esa iEi tks fd dla aVªsfVM ;k Mk;Y;wV iksVkf'k;e esa
?kksyksa dks QSyk ldrs gksa] esa fuEu lHkh fo'ks"krk,a gksuh pkfg,&
d- ,;jVkbV ¼vFkkZr~ ok;q) gksa½
[k- 8-5 eh3@,p ls vf/kd dh {kerk gks vkSj
x- buesa ls dksbZ ,d fo'ks"krk gks(
1- ?kksyksa esa dalaVªsfVM iksVkf'k;e ds fy, ¼1 izfr'kr ;k vf/kd½] 1-5 ls 60 ,eih, dk dk;Zdkjh
ncko] ;k
2- ?kksyksa eas Mk;Y;wV iksVkf'k;e ds fy, ¼1 izfr'kr ls de½] 20 ls 60 ,eih, dk dk;Zdkjh
nckoA
4d027 VcksZ&,DlisaMlZ ;k VcksZ&,DlisaMj&dEizslj lSV~l esa buesa ls nksuksa fo'ks"krk,a gksa&
d- 35ds ¼&238 fMxzh lh-½ ;k de ckgjh rkiØe ds fy, dk;Z djus gsrq fufeZr] vkSj
[k- 1000 fdxzk-@?k.Vk ;k vf/kd ds gkbMªkstu xSls ds FkzwiqV ds fy, fufeZr
4d028 okVj gkbMªkstu lYQkbM ,Dlpsat Vªs dkyEl vkSj bUVjuy dkUVSªDVlZ] fuEuor gSa&
fVIi.kh% mu dkyEl ds fy, tks gSoh okVj ds mRiknu ds fy, fo'ks"k :Ik ls cuk, ;k rS;kj fd, x;s gSa]
fu/kkZfjr midj.k ¼0[k002½ ns[ksaA24 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
d- fuEufyf[kr lHkh y{k.kksa okys okVj gkbMªkstu lYQkbM ,Dlpsat Vªs dkyEl%&
1- 2 ,eih, ;k vf/kd ncko ij lapkfyr fd, tk ldrs gSa]
2- dkcZu LVhy ls fofufeZr ftlesa 5 ;k vf/kd xzsu lkbt uEcj ds vkLVsfufVd ,,lVh,e ¼vFkok
leku ekud½ gS] vkSj
3- 1-8 eh- ;k vf/kd O;kl dkA
[k- en 4d028d eas fofufnZ"V okVj&gkbMªkstu lYQkbM ,Dlpsat Vªs dkyEl gsrq bUVjuy
dkUVSDVlZA
Rkduhdh fVIi.kh% dkyEl ds bUVjuy dkUVSDVlZ lsxesaVsM Vsªst gSa ftudk izHkkoh ,lsEcYM O;kl 1-8 eh- ;k
vf/kd gS] dkm.Vj djsUV dkUVSfDVax dh lqfo/kk nsus ds fy, cuk;k x;k gS vkSj 0-03 izfr’kr ;k de dkcZu
va’k okys LVsuysl LVhy ls fofufeZr gSaA ;s lhoVªst] okYoVªst] ccy dSi Vªst ;k VcksZ fxzM Vsªst gks ldrh
gSA
4d029 gkbMªkstu&Øk;kstsfud fMLVys’ku dkyEl] ftuesa fuEufyf[kr lHkh y{k.k gSa&
d- 35ds ¼&238 fMxzh lh-½ ;k de vkUrfjd rkieku ij lapkyu ds fy, cuk, x;s]
[k- 0-5 ls 5 ,eih, ds vkUrfjd ncko ij lapkyu ds fy, cuk, x;s]
x- fuEufyf[kr esa ls fdlh ,d ls fofufeZr%
1- de lYQj va’k okys 300 J`a[kyk ds LVsuysl LVhy vkSj 5 ;k vf/kd xzsu lkbt uEcj ds
vkLVsfufVd ,,lVh,e ¼;k leku ekud½ ds lkFk] vFkok
2- leku oLrq,a tks Øk;kstsfud vkSj ,p2 laxr nksuksa gSa vkSj
?k- 1 eh- ;k vf/kd ds vkUrfjd O;kl vkSj 5 eh- ;k vf/kd ds izHkkoh yEckbZ dsA
rduhdh fVIi.kh%% in *izHkkoh yEckbZ* ls rkRi;Z ,d iSdM&VkbZi dkWYke esa iSfdax lkexzh dh ,fDVo gkbV
vFkok IysV Vkbi dkye esa baVjuy dkuVsDVj IysV~l dh ,fDVo gkbV ls gSA
4d030 csy¨t&flYM Lبy&Vkbi dEçSljl v©j csy¨t&flYM Lبy&VkÃi iEil ftuesa fuEufyf[kr esa ls lÒh
fo'ks"krk,a g¨aa&
3
d- 50,e ÄUVk vFkok vf/kd dh bUysV o¨Y;we ¶y¨ jsV dh {kerk okys
[k- 2:1 vFkok vf/kd dh ncko vuqikr dh {kerk okys; v©j
x- lÒh lrg okys t¨ fuEufyf[kr lkefxz;¨a es ls fdlh Òh lkexzh ls cuh ç¨lsl xSl ds laidZ esa
vkrs gSa&
1- ,Y;wehfu;e vFkok ,Y;wehfu;e ,ykW;;
2- ,Y;wehfu;e vkWDlkbM;
3- LVsuySl LVhy;
4- fufdy vFkok fufdy ,ykW;;
5- QkLQ¨jl cz¨at; vFkok
6- ¶ywj¨i¨yhelZ
rduhdh fVIif.k;ka :&
1- Lبy dEçSlj vFkok oSD;we iEi esa] ÇØlsV vkdkj dh xSl dh ikWdsV~l baVjeS'kM Likbjy oSul] vFkok
LبYl ds ,d ;k vf/kd t¨M¨+a ds chp esa VªSi g¨ tkrh gS ftuesa ls ,d Äwerh gS v©j vU; fLFkj jgrh gSA
xfr'khy Lبy fLFkj Lبy d¨ Äwekrh gS; ;g ugÈ Äwerh gSA tSls xfr'khy Lبy fLFkj Lبy d¨ Äqekrk
gS; xSl ds ikWdsV vkdkj esas de g¨ tkrs gSa (vFkkZr~ muesa ladqpu g¨ tkrk gS) tSls os e'khu ds ckgjh fgLls
dh rjQ xfr djrs gSaA
2- ,d csy¨t&flYM Lبy dEçslj vFkok osD;we iEi esa] ç¨lsl xSl iEi ds yqfczdsfVM ikV~lZ ls iw.krZ ;k
vyx g¨rh gS v©j ckº; ok;qeaMy ls ,d /kkfRod csy¨t ls vyx g¨rh gSA csy¨t dk ,d fgLlk ewÇox
Lبy ls tqM+k g¨rk gS v©j nwljk fgLlk iEi ds fLFkj gkmÇlx ls tqMk+ g¨rk gSA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 25
3- ¶ywj¨i¨yhelZ esa fuEufyf[kr lkefxz;ka 'kkfey g¨rh gSa ijUrq blesa lhfer ugÈ gS%&
d- i¨yhVsVªk¶ywj¨bFkkbyhu (ihVh,QÃ)
[k- ¶ywj¨usfVM bFkkbyhu ç¨ikbyhu (,QÃih)
x- ij¶ywj¨,yd¨Dlh (ih,Q,)
Ä- i¨yhDy¨j¨Vªkà ¶ywj¨ bFkkbyhu (ihlhVh,QÃ)
M- foukbyhMhu ¶ywj¨jkbM&,sDlk¶yjw ¨&ç¨ikbyhu d¨i¨yhejA
4d031 ,lsEcyht v©j dEi¨usaV~l (0[k003Ã esa fu/kkZfjr miLdj¨a ds rgr fofuÆn"V ds vykok) lfgr v©|¨fxd
miLdj fuEukuqlkj gS%&
d- fuEufyf[kr lÒh fo'ks"krkv¨a lfgr v©j blfy, muds Ýse ds fy, fo'ks"k :i ls fMtkby fd, x,
gkÃ&MsuflVh (ySMXykl vFkok vU;) jsfM,'ku f'kÇYMx ÇoM¨t%
1- 0-09 ,e2 ls vf/kd dk d¨YM ,fj;k
2- 3 xzke@lh,e3 ls vf/kd MsuflVh v©j;
3- 100 ,e,e vFkok vf/kd dh e¨VkÃ
rduhdh fVIi.kh%& en 4d031-d-1 esa in 'd¨YM ,fj;k' ls rkRi;Z gS fMtkbu ,Iyhds'ku esa jsfM,'ku ds
fuEure Lrj rd ,Dli¨t fd, x, ÇoM¨ dk O;wÃax ,fj;k
[k- jsfM,'ku gkÃUM Vhoh dSejk] vFkok muesa ylSa ] t¨ fd vkijs'ku MhxzsMs'ku ds
cxSj 5x104 Gy (flyhdkWu) ls vf/kd dh dqy jsfM,'ku M¨t d¨ fonLVSaM djus ds fy, jsfM,'ku gkÃUM
ds :i fo'ks"k :i ls fMtkbu vFkok jsV fd, x, gSaA
rduhdh fVIi.kh%& in Gy (flyhdkWu) ls rkRi;Z gS vuf'kYM flyhdkWu lSEiy }kjk ,ct¨cZ fd, x, twYl
çfr fdxzk- ÅtkZ ls gS d¨ tc bls vkbukbÇtx jsfM,'ku d¨ ,Dli¨t fd;k tkrk gSA
x- 'j¨csV~l'] ',.M&bQsDVlZ' v©j daVª¨y ;wfuV~l fuEukuqlkj gSa :&
1- 'j¨c¨V~l 'vFkok ,.M&bQsDVlZ ftuesa fuEufyf[kr esa ls d¨Ã fo'ks"krk,a g¨a&
d- mPp foLQ¨Vd¨a d¨ gSaMy djus ds fy, mu ij ykxw jk"Vªh; lqj{kk ekud¨a ds vuqlj.k esa fo'ks"k :i ls
fMtkbu fd, x, mnkg.kr;k] mPp foLQ¨Vd¨a ds fy, bySDVªdy d¨M jsÇVx ds lkFk% vFkok
[k- vkijs'kuy fMxzsMs'ku ds cxSj 5x104 Gy (flyhdkWu) ls vf/kd dh dqy jsfM,'ku M¨t d¨ fonLVsaM
djus ds fy, jsfM,'ku gkMZUM ds #i esa fo'ks"k :i ls fMtkbu vFkok jsfVM fd, x,A
2- en 4d031-x1 esa fofuÆn"V fdlh Òh 'j¨c¨V~l' vFkok ',.M&bQsDVlZ' ds fy, fo'ks"k :i ls fMtkbu dh
xà daVª¨y ;wfuV~lA
fVIi.kh%& en 1-,-3 xSj&U;wfdy;j baMfLVª;y ,Iyhds'kUl tSls vkWV¨e¨ckby isaV&LçSÃax cwFkl ds fy, fo'ks"k
:i ls fMtkbu fd, x, 'j¨c¨V~l' d¨ daVª¨y ugÈ djrh gSA
rduhdh fVIif.k;k¡&
1- 'j¨c¨V~l'
en 4,031-x esa] j¨c¨V ls rkRi;Z ,d eSuqiqys'ku eSdsfuTe ls gS t¨ fd lrr ikFk vFkok fcUnq&nj&fcUnq
osjkbVh dh g¨ ldrh gS] 'lsallZ' dk ç;¨x dj ldrs gSa] v©j fuEufyf[kr esa ls lÒh fo'ks"krk,a g¨rh gSa&
d- eYVhQaD'kuy gS;
[k- f=foeh; Lisl esa osjh,cyeow esaV~l ds ekè;e ls eSVhfj;y] ikV~lZ] VwYl] vFkok26 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
is'ky midj.k dh i¨ft'kÇux vFkok mudh v¨fj,ÇVx es l{keA
x- rhu vFkok vf/kd Dy¨TM vFkok v¨iu yqi lo¨Z&fMokblst 'kkfey gSa ftuesa
LVsÇix e¨VlZ 'kkfey gSa v©j
Ä- ftuesa Vhp@yscSd eSFkM vFkok bySDVªkWfud dEI;wVj ds ekè;e ls
";wtj&,Dlslhcy ç¨xzkesfcfyVh" gS t¨ fd ,d ç¨xzke fd, tkus esa l{ke
ykWftd daVª¨yj g¨ ldrk gS vFkkZr~ ftlesa ;kaf=d n[ky u g¨A
fVIi.kh%& mij¨Dr ifjÒk"kk esa] 'llsa lZ' ls rkRi;Z ,d fQthdy fQu¨feuk ds fMVsDVlZ ls gS ftldh vkmViqV
(,d flxuy ;wfuV esa cnyus ds i'pkr~ ftls ,d daVª¨y ;wfuV ds }kjk baVjçsV fd;k tk ldrk gS)
'ç¨xzkel' tujsV djus esa l{ke g¨rh gSA vFkok ç¨xzke fd, x, MkVk vFkok U;weSfjdy 'ç¨xzke' MkVk d¨
la'k¨f/kr dj ldrh gSA blesa e'khu fotu] buÝkjsM mesÇtx] ,dkmfLVdy besÇtx] VsDVkby Qhy]
bujf'k;y i¨th'ku estÇjx] vkWIVhdy vFkok ,dkmfLVd jsÇtx vFkok VkdZ ekiu {kerv¨a okys 'lsallZ'
'kkfey g¨rs gSaA
fVIi.kh 2& mij¨Dr ifjÒk"kk esa] ';wtj&,Dlslhcy ç¨xzkesfcfyVh' ls rkRi;Z gS uhps ds bu mik;¨a ds vykok
,d mi;¨xdrkZ d¨ 'kq: djus] la'k¨f/kr djus vFkok çfrLFkkfir djus dh lqfo/kk vuqer djuk gS%&
d- ok;Çjx vFkok baVjdusD'kul esa okLrfod cnyko; vFkok
[k- iSjkehVlZ dh çfof"V lfgr Qad'ku daVª¨Yl dh lSÇVx
fVIi.kh 3%& mij¨Dr ifjÒk"kk fuEufyf[kr midj.k¨a d¨ 'kkfey ugÈ djrh gS%&
d- eSuqiqys'ku eSdsfuTe t¨ fd dsoy eSuqvyh@Vsyh vkijsVj ls fu;af=r gSa
[k- fQDlM fldsosal eSuqiqys'ku eSdsfuTe t¨ fd eSdsfudyh fQDlM ç¨xzkeM e¨'kUl ds vulq kj vkijsV
djus okyh vkWV¨esfVM ewÇox fMokblst gSaA ç¨xzke fQDlM LVkWIl tSls fiu v©j dSel ds }kjk eSdsfudyh
fyfeVsM g¨rk gSA e¨'kUl dh fldosa'k v©j ikFk vFkok ,saxYl dk p;u eSdsfudy] bySDVªkWfud vFkok
bySDVªdy rjhd¨a ds ekè;e ls osfj,cy vFkok ifjorZuh; ugÈ g¨rk gSA
x- eSdsfudyh daVª¨YM osfj,cy fldosa'k eSuhiqys'ku eSdsfuTe t¨ fd vkWV¨esfVM ewÇox fMokblsl g¨rs gSa t¨
fd eSdsfudyh fQdlM ç¨xzkeM e¨'kUl ds vuqlkj vkijsV djrh gSaA 'ç¨xzke' eSdsfudy :i ls fQdlM
ijUrq O;oLFkkiuh; LV¨il tSls fiu v©j dSel }kjk lhfer fd;k tkrk gSA e¨'kUl dk fldosa'k v©j ikFk
vFkok ,saxYl dk p;u fu/kkZfjr 'ç¨xzke' iSVªu ds vanj ifjorZuh; g¨rk gSA ,d ;k vf/kd e¨'ku ,fDll es
ç¨xzke iSVªu (mnkgj.kr;k fiu¨a esa ifjorZu vFkok dSel esa vUrifjorZu) esa ifjorZu vFkok la'k¨/ku dsoy
eSdsfudy vkijs'kUl ds ekè;e ls ijw s g¨ ldrs gSaA
Ä- ukWu&lo¨Z&daVª¨YM osfj,cy fldosa'k eSuqiqys'ku eSdsfuTe t¨ fd vkWV¨esfVM ewÇox fMokblsl g¨rs gSa v©j
eSdsfudyh fQdlM ç¨xzkeM e¨'kUl ds vuqlkj vkijsV djrs gSaA 'ç¨xzke' ifjorZuh; g¨rk gS ijUrq fldosa'k
dsoy eSdsfudyh fQDlM bySfDVªdy vk;usjh fMokblsl vFkok ,MtslVscy LVkWIl ls ck;usjh flxuy ls
vkxs c<+rk gSA
M- LV¨jst fcul ds oÆVdy vjs ds vfuok;Z ikVZ ds :i esa fofuÆer dkV¢Zf'k;u dkvÆtusV eSuhiqysVj ds :i
es ifjÒkf"kr LVsdj Øsul v©j LV¨jst vFkok fjVªkboy ds fy, mu fcul ds dkaVsaV d¨ ,Dlls djus ds fy,
fMtkbu fd, x,A
2- ',.M&bQDVlZ'
en 4d031-x esa] ',.M&bQSDVlZ' fxzilZ] ',fDVo VwÇyx ;wfuV~l' g¨rs gSa v©j vU; VwÇyx t¨fd ,d 'j¨c¨V'
eSuqiqysVj vkeZ ds var esa cslIysV ls tqMh+ g¨rh gSA
fVIi.kh%&
mij¨Dr ifjÒk"kk esa] ',fDVo VwÇyx ;wfuV~l' ,d fMokbl gS t¨ fd odZihl esa e¨fVo ikoj] ,uthZ d¨¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 27
ç¨lsl djus esa vFkok lsal djus ds dke vkrh gSA
Ä- fje¨V eSuqIysVlZ t¨ fd jsfM;ks dSfejy lsijs'ku vkijs'kUlo vFkok gkWV lsYl essa fje¨V ,D'ksUl miyC/k
djokus esa ç;qDr fd, tk ldrs gSa v©j muesa fuEufyf[kr essa ls d¨Ã fo'ks"krk g¨%&
1- gkWV lSy oky esa 0-6 eh- vFkok vf/kd cs/ku dh {kerk (nhokj ij vkijs'ku ds ekè;e ls); vFkok
2- ,d gkWV lSy oky ds VkWi ij czht v¨oj djus dh {kerk e¨Vkà 0-6 eh- vFkok vf/kd (oky ij vkijs'ku
ds ekè;e ls)
rduhdh fVIi.kh%& fje¨V eSuqIysVlZ ,d fje¨V vkijsÇVx vkeZ v©j VÆeuy fQDlpj d¨ ekuoh; vkijsVj
dk;¨± dk vuqokn çLrqr djrs gSaA ;s ekLVj@Lyso çdkj ds g¨ ldrs gSa vFkok tkW;fLVd vFkok dh&c¨MZ
}kjk vkijsV fd, tk ldrs gSaA
4444[[[[kkkk UUUU;;;;wwDDwwDDyyyyhhhh;;;;jjjj ,,,,DDDDllllIIIIyyyykkkkssffssfflllloooo iiiizz..zz..kkkkkkkkyyyyhhhh ddddss ss ffffooooddddkkkkllll eeeesasa sasa iiiizz;;zz;;qqDDqqDDrrrr ttttkkkkaappaapp vvvvkkkkSSjjSSjj eeeekkkkiiii mmmmiiiiddddjjjj....kkkk llllffffggggrrrr mmmmiiiiddddjjjj....kkkk]]]]
,,,,llllssEEssEEccccyyyyhhhh vvvvkkkkSjSjSjSj llllaa??aa??kkkkVVVVddddAAAA
4[k001 QksVkseYVhIyk;j V~;wCl ftlesa fuEufyf[kr nksuksa y{k.k 'kkfey gSa&
d- 20 oxZ lseh- ls vf/kd {ks=Qy ds QksVksdSFkksM vkSj
[k- 12 ,u,l ls de ,uksMiYl jkbt VkbZeA
4[k002 ¶yS'k ,Dl&js tujsVlZ vFkok iYLM bysDVªku lDlhyjsVlZ ftlesa fuEufyf[kr lewg y{k.k ekStwn
gSa&
d- 1- 500 dsbZoh ;k vf/kd fdUrq 25 ,ebZoh ls de ds ,DLkhyjsVj ihd bysDVªku ,uthZ] vkSj
2- 0-25 ;k vf/kd ds esfjV ¼ds½ vk¡dMs+ ds lkFk vFkok
[k- 1- 25 ,ebZoh ;k vf/kd ds ,DLkhyjsVj ihd bysDVªku ,uthZ] vkSj
2- 50 ,e MCY;w ls vf/kd ihd ikojA
fVIi.kh% en 4[k002 mu ,DlhyjsVlZ dks fu;fU=r ugha djrk tks bysDVªku che ;k ,Dl&js jsfM,'ku
¼mnkgj.kkFkZ bysDVªku ekbØksLdkih½ ls vyx iz;kstu ds fy, rS;kj iz.kkyh ds la?kVd Hkkx gSa vkSj tks
fpfdRlh; iz;kstuksa ds fy, Hkh ugha rS;kj fd, x;s gSaA
rduhdh fVIif.k;ka&
1- esfjV ds dk vkadM+k ds =1-7x10 dh ?kkr 3 oh2- 65 D;w ifjHkkf"kr gSA tgka oh fefy;u bysDVªku
oksYV~l esa ihd bysDVªku ,uthZ gSA ;fn ,DlhyjsVj che iYl M~;wjs'ku 1 ekbØks lsds.M ds
cjkcj ;k mlls de gS] rks D;w dwyEc esa dqy ,DlhyjsVsM vkos'k gSa ;fn ,DlhyjsVj che iYl
M~;wjs'ku 1 ekbØkslsd.M ls vf/kd gS rks D;w vf/kdre ,DlhyjsVj vkos”k 1 ekbØkslsd.M esa gS
D;w cjkcj gSA 1 ekbØkslsd.M ls de ij Vh ds lkis{k esa vkbZ dk lekdyu vFkok che iYl dk
VkbZe M~;wjs'ku ¼D;w= vkbZMhVh½ tgka vkbZ ,Eih;lZ esa che djsUV vkSj Vh lsd.M~l esa le; gSA
2- ihd ikoj = ¼oksYV~l esa ihd iksVsaf'k;y½ x ¼,Eih;lZ esa ihd che djsUV½
3- ekbØksoso ,DlhyjsfVax dSfoVht ij vk/kkfjr e'khuksa esa che iYl dk Vke M~;wjs'ku] 1
ekbØkslsd.M ;k ,d ekbØksoso ekbysVj iYl ds ifj.kker% cUPM che iSdsV ds M~;wjs'ku esa ls
de okyk gSA
4- ekbØksoso ,DlhyjsfVax dSfoVht ij vk/kkfjr e'khuksa esa ihd che djsUV cUPM che iSdsV ds VkbZe
M~;wjs'ku esa vkSlr djsUV gSA
4[k003 iz{ksikL=ksa dks 1-5 fdeh@lsd.M ;k vf/kd dk Roj.k nsus esa leFkZ vU; mPposx xu iz.kkyh ¼iz.kksnd] xSl]
dkW;y] bysDVªkseSXusfVd vkSj bysDVªksFkeZy izdkj ds vkSj vU; vxzorhZ iz.kkfy;ka½
fVIi.kh% ;g en mPp osx vL= iz.kkyh ds fy, fo'ks"kr% rS;kj dh xbZ canwd ij fu;=a .k ugha djrk
4[k004 mPp xfr dSejs vkSj besftax midj.kksa vkSj muds la?kVd fuEukuqlkj gSa%
fVIi.kh % fuEufyf[kr fo'ks"krkvksa dks izkIr djus ds fy, dSejksa vFkok besftax midj.kksa ds fu"iknu dks
c<+kus vFkok ekspu djus gsrq fo'ks"k :Ik ls rS;kj lk¶Vos;j fu;af=r fd;k x;k gS ¼en 4 x ns[ksa½28 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
d- LVªhd dSejs vkSj muds fo'ks"k :Ik ls rS;kj la?kVd fuEukuqlkj gSa%
1- 0-5 feeh@ekbØkslsd.M ls T;knk jkbfVax LihM ds LVªhd dSejsA
2- 50 ,u,l ;k de Vkbe fjtksY;lw u ds ;ksX; bysDVªkfud LVªhd dSejsA
3- en 4[k004d2 esa fofufnZ"V dSejksa gsrq LVªhd V~;wClA
4- LVªhd dSejs ds lkFk iz;ksx djus ds fy, fo'ks"k :Ik ls rS;kj fd, x, Iyx&bUl ftu esa
ekWM~;wyj lajpuk gS vkSj tks 4[k004-d-1 vFkok 4[k004-d-2 esa fu"iknu fo'ks"krkvksa esa l{ke gSA
5- 4[k004-d-1 esa fofufnZ"V dSejs ds fy, fo'ks"k :Ik ls rS;kj flaØksukbftax bysDVªkfuDl ;wfuVsa vkSj
jksVj ,lsEcyht 'kkfey gSa tks VckZbUl] fejlZ vkSj ch;fjaXlA
[k- Ýsfeax dSejs vkSj muds fo'ks"k :Ik ls rS;kj la?kVd fuEukuqlkj gSa%
1- 22500 ÝsEl izfr lsda.M ls T;knk fjdkfMZax nj ds Ýsfeax dSejs(
2- 50 ,u,l ;k de Ýse ,Dlikstj Vkbe ds ;ksX; Ýsfeax dSejs(
3- vU; Ýsfeax V~;wCl vkSj lkfyM LVsV besftax fMokblsl ftudk 50 ,u,l ls de QklV best
xSfVax Vkbe ¼”kVj½ gS vkSj en 4[k004-[k-1 vFkok 4[k004-[k-2 esa fofufnZ"V dSejksa gsrq fo”ks"k rkSj
ij cuk, x, gSaA
4- Ýsfeax dSejs ds lkFk iz;ksx djus ds fy, fo'ks"k :Ik ls rS;kj fd, x, Iyx&bUl ftu esa
ekWM~;wyj lajpuk gS vkSj tks 4[k004-[k-1 vFkok 4[k004-[k-2 esa fu"iknu fo'ks"krkvksa esa l{ke gSA
5- 4[k004-[k-1 vFkok 4[k004-[k-2 esa fofufnZ"V dSejs ds fy, fo”ks"k :Ik ls rS;kj flaØksukbftax
bysDVªkfuDl ;wfuVsa vkSj jksVj ,lsEcyht “kkfey gSa tks VckZbUl] fejlZ vkSj ch;fjaXlA
x- lkfyM LVsV vFkok bysDVªkWu V~;wc dSejs vkSj muds fo”ks"k :Ik ls rS;kj fd, x, la?kVd fuEukulq kj gSa%
1- 50 ,u,l ;k de “kh?kz best xsfVax ¼’kVj½ ds lkFk lkfyM LVsV dSejs vFkok bysDVkªWu V~;wc
dSejs(
2- lkfyM LVsV besftax midj.k vkSj best baVsUlQkblZ V~;wc ftudk 50 ,u,l ls de QkLV best
xSfVax Vkbe gS vkSj en 4[k004-x-1 esa fofufnZ"V dSejksa gsrq fo”ks"k rkSj ij cuk, x, gSa(
3- 50 ,u,l ;k de ’kh?kz best xsfVax ¼”kVj½ Vkbe ds lkFk bysDVªks vkWfIVdy “kVfjax midj.k ¼dsjZ
vFkok ikWdsYl lsYl½
4- dSejks ds lkFk iz;ksx ds fy, fo”ks"k :Ik ls rS;kj Iyx&bUl ftuesa ekM~;wyj lja puk gS vkSj tks
4[k004-x-1 esa fu"iknu fo”ks"krkvksa esa l{ke gS(
rduhdh fVIi.kh% MkbuSfed bosaV ds flaxy best dks iznku djus ds fy, gkbZ LihM flaxy Ýse dSejksa dk
iz;ksx fd;k tk ldrk gS vFkok bosaV ds efYViy best dks iznku djus ds fy, vusd ,sls dSejs Øfed
:Ik ls fVªxj iz.kkyh esa lfEefyr fd, tk ldrs gSaA
4[k005 mPp foLQksVd vFkok foLQksVd midj.kksa ds ifj{k.k ds fy, rS;kj fd, x, mPp foLQksV fu;a=.k iksr]
psEclZ] daVsuj vkSj vU; lerqY; fu;=a .k midj.k vkSj ftuesa fuEufyf[kr nksuksa fo”ks"krk,a gSa%
d- 2 fd-xzk- ds Vh,uVh ds lerqY; vFkok mlls T;knk foLQksVd ls iw.kZr;k ;qDr gsrq rS;kj fd;k
x;kA
[k- ftuesa fMtkbu ds rRo] fj;y Vkbe buScfyax Qhpj vFkok MkbvXukfLVªd ds fMySV VªkalQj
vFkok estjesaV bUQksesZ’ku gSA
4[k006 gkbMªksMk;ukfed iz;ksxksa gsrq Lis”kykbTM bULVwesUVs”ku fuEukuqlkj gS&
d- 10 ekbØkslsd.M ls de le;kUrj ds nkSjku 1 fdeh@lsd.M ls T;knk osx ds eki gsrq osykflVh
baVj QsjksehVlZ]
[k- 10 thih, ls T;knk ncko ekius esa l{ke “kkWd ncko xst] eStkfuu ;sVjfc;e vkSj
ikWyhfou;syhMsus ck;¶Y;wvkWjkbM ¼ihohch,Q] ihoh,Q2½
Xk- 10 th ikLdy ls vf/kd ncko gsrq DokV~lZ izs”kj VªkUlM~;lw lZA¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 29
fVIi.kh% en 4[k006d esa folklZ ¼fdlh Hkh fj¶ysDVj gsrq osykflVh baVjQsjksehVj iz.kkyh½] Mh,yvkbZ
¼MkIyV ystj baVjQsjksehVlZ½ vkSj ihMhoh ¼QksVksuhd MkIYkj osykslhehVj tks gsM&oh ¼gsVªksMkbu osykslhehVj
ls Hkh tkuk tkrk gS tSls osykflVh baVjQsjksehVlZ “kkfey gSA
4[k007 gkbZ&LihM iYl tujsVlZ vkSj muds iYl gsM~l] ftuesa fuEukuqlkj nksuksa fo”ks"krk,a gSa%
d- 55 vkse ls de jsflfLoV yksM esa 6 oksYv ls vf/kd vkmViqV oksYVstA
[k- 500 ih,e ls de *iYl Vªkaft”ku Vkbe*A
rduhdh fVIi.kh% 1- en 4[k007[k esa *iYl Vªkaft”ku Vkbe* 10 izfr”kr vkSj 90 izfr”kr oksYVst
,fEiyhV~;wM ds chp le;kUrj ds :Ik ls ifjHkkf"kr fd;k x;k gSA
2- iYl gsM~l vkosx QkWfeZax usVodZ gS tks oksYVst LVsi QaD”ku dks Lohdkj djus vkSj mls fofo/k iYl QkeZ
ds vkdkj ftlesa vk;rkdkj] f=dks.kh;] LVsi] bEiYl] ?kkrkad vFkok eksukslbdy izdkj esa rS;kj fd;k x;k
gSA iYl gsM~l iYl tsujsVj dk vfuok;Z fgLlk gks ldrk gSA os fMokbl ds Iyx&bu ekWM~;wy gks ldrs
gSa vFkok os ckg~; :Ik ls tqMs+ gq, fMokbl gks ldrs gSaA
4[k008 fMVksusVlZ vkSj eYVh IokbaV bfufl,”ku flLVe] fuEukuqlkj%&
d- bysfDVªhdyh fMªosu ,DlIyksflo fMVksusVlZ fuEukuqlkj%
1- ,DlIyksfMax fczt ¼bZch½
2- ,DlIyksfMax fczt ok;j ¼bZchMCY;w½
3- LySij
4- ,DlIyksfMax Qk;y bfufl;sVlZ ¼bZ,QvkbZ½
[k- 2-5 ekbØkslsd.M ls de dh lrg ij QSyh bfufl,”ku Vkbfeax ls flaxy Qk;fjax flxuy ls 5000 oxZ
feeh- ls vf/kd {ks=Qy esa QSys yxHkx ,d lkFk foLQksVd lrg dks bfufl,V djus ds fy, rS;kj flaxy
vFkok eYVhiy fMVksusVlZ dh O;oLFkkA
fVIi.kh% en 4[k008 dsoy izkFkfed foLQksVdksa tSls ysM ,tkbZM dks fu;af=r ugha djrk gSA
rduhdh fVIi.kh% en 4[k008 esa lacaf/kr MsVksusVlZ ,d NksVs bysfDVªdy daMDVj ¼fczt] fczt
ok;j vFkok Qk;y½ dk iz;ksx djsxk tks blesa ls rst gkbZ djsUV bysfDVªd iYl xqtkjus ij foLQksVd ds
:Ik esa ok"ihd`r gks tkrk gSA uku LySij fdLe esa ,DlIyksfMax daMDVj ihbZVh,u ¼isUVk bfjfFkzVkyVsVsªfuVsªV½
tSls dkUVSfDVax gkbZ ,DlIyksflo eSVsfj;y esa jlk;fud MsVksus”ku “kq: dj nsrk gSA LySij MsVksusVlZ esa
bysfDVªdy daMDVj dk foLQksVd ok"ihdj.k vUrjky ds fljs ij ,d ¶yk;j ;k LySij iSnk djrk gS vkSj
foLQksVd ij LySij dk izHkko jlk;fud MsVksus”ku dh “kq:vkr dj nsrk gSA dqN fMtkbUl esa LySij
pqEcdh; cy ls izHkkfor gksrk gSA ,DlIyksfMax Qk;y MsVksusVj ;k rks ,d bZch vFkok ,d Lysij VkbZi
MsVksusVj dk mYys[k djrk gSA bfufl;sVj “kCn dHkh&dHkh MsVksusVj “kCn ds LFkku ij Hkh iz;ksx gksrk gSA
4[k009 Qk;fjax lsV~l vkSj leku gkbZ djsUV iYl tujsVj fuEukuqlkj gSa%&
d- MsVksusVj Qk;fjax lsV ¼izorZu iz.kkyh] Qk;j lsV~l½ bysDVªksfudyh pktZ fd, gq,] foLQksVd :Ik ls pfyr
vkSj vkWfIVdyh pkfyr Qk;fjax lsV~l tks mi;qZDr en 4[k008 }kjk fofufnZ"V eYVhiy dUVªksYM MsVksusVlZ
dks pykus ds fy, cuk;k x;k gSA
[k- ekMqyj bysfDVªdy iYl tujsVlZ ¼iYllZ½ ftlesa fuEufyf[kr lHkh y{k.k ekStwn gSa%&
1- iksVsZcy] eksckby vFkok jxsMkbZTM&iz;ksx gsrq cuk;k gqvkA
2- 40 vksg~e ls de yksM esa 15 ekbØkslsd.Ml ls de esa mudh ÅtkZ iznku djus ds ;ksX;A
3- 100 , ls vf/kd vkmViqV okys
4- 30 ls-eh- ls vf/kd vk;ke ugha(
5- 30 fd-xzk- ls de otu
6- 223 fMxzh ls 373 fMxzh ds ¼&50 fMxzh lh ls 100 fMxzh lh½ ds foLrkfjr rki lhek ij lapkyu
ds fy, fofufnZ"V vFkok ,sjksLisl bLrseky gsrq ;Fkksfpr fofufnZ"VA30 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
x- ekbØks Qk;fjax bdkbZ ftuesa fuEufyf[kr fo”ks"krk,a gSa%&
1- 35 feeh ls vf/kd vk;ke ugha
2- 1 fd- oksYV- ls vf/kd vFkok ds lerqY; oksYVst jsfVax
3- 100 ,u,Q ls vf/kd vFkok ds lerqY; /kkfjrk
fVIi.kh% vkWIVhdyh pkfyr Qkbfjax lsV~l esa os nksuksa ,EykWbax ystj bfufl,”ku ,oa ystj pkftaZx “kkfey
gSA foLQksVd pfyr Qk;fjax lsV~l esa nksuksa foLQksVd QsjksbysfDVªd vkSj foLQksVd QsjksesXusfVd Qk;fjax
lsV izdkj “kkfey gSA en 4[k009-[k- esa >sukWu ¶yS”k ySEi pkyd “kkfey gSA
4[k010 fLofpax ;a= fuEukuqlkj gSa%&
d- dksYM dsFkksM V~;wCl] pkgs xSl Hkjh gks vFkok ugha] LikdZ xSl dh rjg lapkfyr] ftlesa fuEufyf[kr xq.k
gksa%
1- rhu ;k vf/kd bysDVªksM~l gksa]
2- 2-5 fd- oksYV vFkok vf/kd dh ,uksM ihd oksYVst jsfVax]
3- 100, vFkok vf/kd dh ,uksM ihd djaV jsfVax] vkjS
4- 10 ekbØks lsd.M vFkok de ,uksM fMys Vkbe]
fVIi.kh% xSl fØVªksu V~;wCl vkSj oSD;we LizkbVªku V~;wCl lfgr en 4[k010d
[k- fVªxMZ LikdZ&xSIl ftlesa nksuksa fuEufyf[kr xq.k gksa&
1- 15 ekbØks lsd.M vFkok de dk ,uksM fMys Vkbe]
2- 500, vFkok vf/kd ds ihd djaV ds fy, jsVsM]
x- QkLV fLofpax fØ;k ds lkFk ekM~;wy vFkok vlsEcyht ftlesa lHkh fuEufyf[kr xq.k gksa&
1- 2 fd- oksYV ls vf/kd ,uksM ihd oksYVst jsfVax]
2- 500, ;k vf/kd ,uksM ihd djaV jsfVax] vkSj
3- 1 ekbØks lsd.M ;k de dk VuZ&vku VkbeA
4[k011 iYl fMLpktZ dSisflVj ftlesa fuEufyf[kr esa dksbZ ,d xq.kksa dk lsV gks%
d- 1- 1-4 fd- oksYV ls vf/kd oksYVst jsfVax]
2- 10 twy ls vf/kd ÅtkZ LVksjst]
3- 0-5 ekbØks ,Q ls vf/kd dSisflVlsa ] vkSj
4- 50 ,u,p ls de lhjht b.MDVlsa ]
vFkok
[k- 1- 750 oksYV ls vf/kd oksYVst jsfVax]
2- 0-25 ekbØks ,Q ls vf/kd dSisflVlsa ] vkSj
3- 10 ,u,p ls de lhjht b.MDVlsa A
4[k012 U;wVªku tujsVj flLVe] V~;wCl lfgr] ftlesa fuEufyf[kr nksuksa xq.k gksa&
d- fcuk ,DlVuZy oSD;we flLVe ds fcuk vkijs’ku ds fy, fMtk;u fd;k gqvk] vkSj
[k- 1- fVªfV;e&M~;wVhfj;e U;wfDy;j fj,D”ku dks izsfjr djus gsrq bysDVªksLVsfVd ,Dlhyjs”ku dks iz;ksx
djukA
vFkok
2- M~;wVhfj;e& M~;wVhfj;e U;wfDy;j fj,D”ku dks izsfjr djus gsrq bysDVªksLVsfVd &,Dlhyjs”ku dks
iz;ksx djuk vkSj 3x10 dh ?kkr 9 U;wVªku@,l ;k blls vf/kd buiqV ds fy, l{ke
4[k013 fuEufyf[kr fo”ks"krkvksa ds lkFk MsVhusVj dks yks bUMDVUl ikFk iznku djus ds fy, fLVªiykbUl%
d- 1- 2 fd- oksYV ls vf/kd oksYVst jsfVax]
2- 20 ,u,p ls de b.MDVlsa A¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 31
4444xxxx rrrrdddduuuuhhhhddddhhhh vvvvkkkkSSjjSSjj llllkkkk¶¶¶¶VVVVooooss;;ss;;jjjj
4d vFkok 4[k esa fofufnZ"V enksa ds fodkl] mRiknu vFkok iz;ksx ds fy, rduhdh vkSj lk¶Vos;j "
3333---- bbbbllll vvvvffff////kkkkllllwwppwwppuuuukkkk ddddkkkk mmmmnnnn~~nn~~nnss’’ss’’;;;;%%%% LdksesV lwph [fu;kZr vkSj vk;kr enksa ds vkbZVhlh ¼,p,l½ oxhZdj.k ds vulq wph 2 ls
ifjf’k"V 3] dh 0] 3 vkSj 4 Jsf.k;ksa esa la”kks/ku@ifjo/kZu dks vf/klwfpr dj fn;k x;k gSA
[Qk- la- 01@91@171@37@,,e 10@blZ h ¼,l½]
vuwi o/kkou] egkfuns”kd] fons”k O;kikj
MINISTRY OF COMMERCE AND INDUSTRY
(Department of Commerce)
(DIRECTORATE GENERAL OF FOREIGN TRADE)
NOTIFICATION
New Delhi, the 29th April, 2016
No. 05 /(2015-2020)
Subject: Updation of SCOMET list [Appendix 3 to Schedule 2 of ITC (HS) Classification of
Export & Import Items].
S.O. 1589(E).—In exercise of powers conferred by Section 5 and Section 14 A of the Foreign
Trade (Development & Regulation) Act, 1992 {FT(D&R) Act,1992} as amended, the Central
Government hereby makes the following amendments to the list of specified goods, services and
technologies, i.e. Special Chemicals, Organisms, Materials, Equipment and Technologies
(SCOMET) that was notified vide Notification No.37 (RE-2012) /2009-2014 dated 14th March, 2013
and amended vide Notification No.26 (RE-2013) /2009-2014 dated 3rd July, 2013 and vide
Notification No. 116 (RE-2013)/2009-2014 dated 13th March, 2015:
2. Amendments in the SCOMET categories will be as follows:
A. For SCOMET Category 0 and the entries there under, the following shall be substituted as
follows:
“ Category 0 Nuclear materials, nuclear-related other materials, equipment and technology
Note: Export of these items is regulated under the Atomic Energy Act, 1962 and rules framed, and
notifications/orders issued there under from time-to-time by the Department of Atomic Energy. The
licensing authority for items in this category is the Department of Atomic Energy. An application for
licence to export shall be made in writing to the Joint Secretary (I&M), Department of Atomic
Energy, Anushakti Bhavan, CSM Marg, Mumbai 400 001
0A PRESCRIBED SUBSTANCES
Note: Any radioactive material in Category 0A shall additionally attract the provisions of Radiation
Protection Rules, 2004 made under the Atomic Energy Act, 1962 and the provisions of Section-16 of
the Atomic Energy Act, 1962.
0A1 Source Material
0A101 Uranium containing the mixture of isotopes occurring in nature.
0A102 Uranium depleted in the isotope 235.
0A103 Thorium.
0A104
Any of the materials specified above in 0A101, 0A102, or 0A103 in the form of metal,
alloy, chemical compound, or concentrate.
0A105 Any other material containing one or more of the foregoing.32 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
Note 1:
Source material includes uranium and thorium ores or concentrates.
Note 2:
Exports of following items, for the use only in non-nuclear activities, to a given
recipient country, within a period of one calendar year, not exceeding the limits
specified below, are not controlled:
a. Uranium (containing the mixture of isotopes in nature): 100 kilograms.
b. Depleted uranium (uranium depleted in the
isotope 235 below that occurring in nature): 1000 kilograms.
c. Thorium: 1000 kilograms.
Note 3: 0A1 does not control following –
i. Uranium and thorium ores, mineral concentrates or other materials
that contain less than 300 parts per million (ppm) of uranium or/and
thorium;
ii. Alloys containing less than 5 % thorium;
iii. Ceramic products containing thorium, which have been
manufactured for non-nuclear use.
0A2 Special Fissionable Material
0A201 Plutonium-239.
0A202 Uranium-233.
0A203 Uranium enriched in the isotopes 235 or 233.
0A204 Neptunium.
0A205 Any material containing one or more of the foregoing.
0A206 Such other fissionable material determined by the Central Government from time to
time.
Technical note:
The term “uranium enriched in the isotopes 235 or 233” means uranium
containing the isotopes 235 or 233 or both in an amount such that the
abundance ratio of the sum of these isotopes to the isotope 238 is greater
than the ratio of the isotope 235 to the isotope 238 occurring in nature.
Note:
1. The term “special fissionable material” does not include source material.
2. Any quantity of special fissionable material is prescribed substance.
3. 0A2 does not control -
a. Plutonium with an isotopic concentration of plutonium-238 exceeding
80%, and
b. Special fissionable material when used in gram quantities or less as a
sensing component in instruments.
0A3 Other Materials
‘Other Materials’ means non-nuclear materials for reactors, nuclear related dual-use
materials indicated below and such materials as determined by the Central
Government from time to time.
0A301 Deuterium and heavy water
Deuterium, heavy water (deuterium oxide) and any other deuterium compound, in
which the ratio of deuterium to hydrogen atoms exceeds 1:5000,
a. for use in a nuclear reactor in quantities exceeding 5 kilograms of deuterium¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 33
atoms in one consignment or 25 kilograms of deuterium atoms, for any one
recipient country within a period of one calendar year;
b. for use in a non-nuclear activity in quantities exceeding 200 kilograms of
deuterium atoms, for any one recipient country within a period of one calendar
year.
0A302 Nuclear grade graphite
Nuclear grade graphite having a purity level better than 5 parts per
million (ppm) boron equivalent and with a density greater than 1.5 gram/cc -
a. for use in a nuclear reactor or any other nuclear activities in quantities
exceeding 1 kilogram;
b. for use in non-nuclear activities in quantities exceeding 30 metric tons for any
one recipient country within a period of one calendar year.
Note: The item 0A302 does not cover graphite powder.
0A303 Zirconium with hafnium content of less than 1 part to 500 parts of zirconium by
weight (i.e. less than 2000 ppm) in the form of metal, alloys containing more than
50% zirconium by weight, compounds, manufactures thereof, waste or scrap of any of
the foregoing.
0A304 Beryllium metal, its compounds, alloys containing more than 50% beryllium by
weight, manufactures thereof, and waste or scrap of any of the foregoing and its
minerals / concentrates including beryl but excluding:
a. beryllium windows used for x-ray machines or for bore-hole logging devices,
and
b. beryl in the form of emerald, aquamarine or ‘cut & polished’ semi-precious
stones for use in jewellery.
0A305 Lithium enriched in the Lithium-6 (6Li) isotope to greater than its natural isotopic
abundance (i.e. more than 7.5%) and the products or devices containing enriched
lithium such as elemental lithium, alloys, compounds, mixtures containing lithium,
manufactures thereof, waste or scrap of any of the foregoing.
0A306 Niobium and Tantalum, their metals, alloys and minerals including columbite and
tantalite.
0A307 [Reserved]
0A308 Tritium, tritium compounds or mixtures containing tritium in which the ratio of tritium
to hydrogen atoms exceeds 1 part in 1000, except when utilized in such quantities and
for such purposes as for organic labelled compounds, Gas Filled Light Sources and as
Tritiated Water for radiotracer studies.
0A309 Hafnium
Hafnium metal, alloys containing more than 60% hafnium by weight, hafnium
compounds containing more than 60% hafnium by weight, manufactures thereof, and
waste or scrap of any of the foregoing.34 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
0A310 Radium-226
Radium-226 (226Ra), radium-226 alloys, radium-226 compounds, mixtures containing
radium-226, manufactures thereof, and products or devices containing any of the
foregoing, except medical applicators and a product or device containing less than 0.37
GBq (10mCi) of Ra-226 in any form.
0A311 Boron
Boron enriched in the Boron-10 (10B) isotope to greater than its natural isotopic
abundance as follows:
Elemental boron, compounds, mixtures containing boron, manufactures thereof, waste
or scrap of any of the foregoing.
0A312 Helium-3
Helium-3 (3He), mixtures containing helium-3, and products or devices containing any
of the foregoing.
Note: A product or device containing less than 1gm of Helium-3 is excluded.
0A313 ‘Radionuclides’ appropriate for making neutron sources based on alpha-n reaction, in
the following forms:
a. Elemental;
b. Compounds having a total activity of 37 GBq per kg or greater;
c. Mixtures having a total activity of 37 GBq per kg or greater;
d. Products or devices containing any of the foregoing.
Radionuclides controlled by this item include:
Actinium-225 Actinium-227 Californium-253
Curium-240 Curium-241 Curium-242
Curium-243 Curium244 Einsteinium-253
Einsteinium254 Gadolinium-148 Plutonium-236
Plutonium-238 Polonium-209 Polonium-210
Polonium-208 Radium-223 Thorium-228
Thorium-227 Uranium-230 Uranium-232
0B Prescribed Equipment
0B001 Nuclear Reactors; associated equipment, components, and systems especially designed,
prepared, or adapted or used or intended to be used in such reactors including but not
limited to:-
a. Complete nuclear reactors
b. Nuclear reactor vessels
c. Nuclear reactor fuel charging and discharging machines
d. Nuclear reactor control rods and equipment
e. Nuclear reactor pressure tubes¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 35
f. Nuclear fuel cladding: Zirconium metal tubes or zirconium alloy tubes (or
assemblies of tubes), in which hafnium to zirconium ratio is 1:500 or less, for
use as nuclear fuel cladding
g. Primary coolant pumps or circulators
h. Nuclear reactor internals
i. Heat exchangers (steam generators) for use in the primary or intermediate
coolant circuit of a nuclear reactor
j. Neutron detectors
k. External thermal shields.
0B002 Plants for processing, production, concentration, conversion or recovery of Prescribed
Substances (such as uranium, plutonium, thorium, deuterium, heavy water, tritium,
lithium); associated equipment, components and systems especially designed, prepared
or adapted or used or intended to be used in such plants including but not limited to:
a. Plants for production or concentration of deuterium, heavy water or deuterium
compounds-
1. Water - Hydrogen Sulphide Exchange Towers with diameters of 1.5 m or
greater and capable of operating at pressures greater than or equal to 2
MPa (300 psi), especially designed or prepared for heavy water
production.
2. Especially designed or prepared blowers and compressors for hydrogen-
sulphide gas circulation. These blowers or compressors have a
throughput capacity greater than or equal to 56 m3/second (120,000
SCFM) while operating at pressures greater than or equal to 1.8 MPa
(260 psi) suction and have seals designed for wet H S service
2
3. Ammonia-Hydrogen Exchange Towers greater than or equal to 35 m in
height with diameters of 1.5 m to 2.5 m capable of operating at
pressures greater than 15 MPa especially designed or prepared for
heavy water production
4. Tower Internals and Stage Pumps: Tower internals and stage pumps
especially designed or prepared for heavy water production. Tower
internals include especially designed stage contactors which promote
intimate gas/liquid contact. Stage pumps include especially designed
submersible pumps for circulation of liquid ammonia within a
contacting stage internal to the stage towers.
5. Ammonia Crackers with operating pressures greater than or equal to 3
MPa especially designed or prepared for heavy water production.
6. Infrared Absorption Analyzers capable of ‘on-line’ hydrogen/deuterium
ratio analysis
7. Catalytic Burners for conversion of enriched deuterium gas into heavy
water
8. Complete heavy water upgrade systems or columns therefor
9. Ammonia synthesis converters or synthesis units for heavy water
production utilizing the ammonia-hydrogen exchange process.
b. Plants for the conversion of uranium
1. Systems for the conversion of uranium ore concentrates to UO ;
3
2. Systems for the conversion of UO to UF ;
3 6
3. Systems for the conversion of UO to UO ;
3 2
4. Systems for the conversion of UO to UF ;
2 4
5. Systems for the conversion of UF to UF ;
4 6
6. Systems for the conversion of UF to uranium metal;
4
7. Systems for the conversion of UF to UO ;
6 236 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
8. Systems for the conversion of UF to UF ;
6 4
9. Systems for the conversion of UO to UCl .
2 4
c. Plants for the conversion of plutonium
1. systems for the conversion of plutonium nitrate to oxide
2. systems for plutonium metal production
d. Tritium facilities or plants for the production, recovery, extraction, concentration
or handling of tritium and equipment therefor including hydrogen or helium
refrigeration units; and hydrogen isotope storage or purification systems using
metal hydrides as the storage or purification medium.
e. Lithium isotope separation facilities or plants, and systems and equipment
therefor as follows -
1. Facilities or plants for the separation of lithium isotopes;
2. Equipment for the separation of lithium isotopes based on the lithium-mercury
amalgam process, as follows:
a) Packed liquid-liquid exchange columns especially designed for lithium
amalgams;
b) Mercury or lithium amalgam pumps;
c) Lithium amalgam electrolysis cells;
d) Evaporators for concentrated lithium hydroxide solution;
3. Ion exchange systems especially designed for lithium isotope separation, and
especially designed component parts therefor;
4. Chemical exchange systems (employing crown ethers, cryptands, or lariat
ethers) especially designed for lithium isotope separation, and especially
designed component parts therefor.
0B003 Plants for reprocessing of irradiated nuclear fuel and equipment, components and
systems especially designed, prepared or adapted or used or intended to be used in such
plants, including but not limited to:
a. Irradiated fuel element chopping machines designed for remote operation
b. Dissolvers capable of withstanding hot and highly corrosive liquid for
dissolution of irradiated nuclear fuel and which can be remotely loaded and
maintained
c. Solvent extractors and solvent extraction equipment resistant to the corrosive
effect of nitric acid
d. Chemical holding or storage vessels resistant to the corrosive effect of nitric acid
e. Neutron measurement systems for integration and use with automated process
control systems for the reprocessing of irradiated fuel elements.
f. Industrial equipment including assemblies and components as follows:
1. High density (lead glass or other) radiation shielding windows
2. Radiation hardened TV cameras, or lenses therefor
3. ‘Robots’ or ‘end effectors’ especially designed for handling high explosives;
and control units therefor
4. Remote manipulators that can be used to provide remote actions in
radiochemical separation operations or hot cells
0B004 Plants for treatment, handling, storage and transportation of radioactive wastes from
nuclear reactors or from plants for processing Source Materials or Special Fissionable
Materials or from nuclear reprocessing plants; irradiated nuclear fuel; Special
Fissionable Materials, and equipment especially designed, prepared, adapted, or
intended to be used therefor.¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 37
0B005 All systems, associated equipment, components for separation or enrichment of isotopes
of uranium, plutonium, lithium, boron or other elements, other than analytical
instruments, especially designed, prepared, adapted, used or intended to be used
therefor as follows:
a. Gas centrifuges and assemblies and components especially designed or prepared for
use in gas Centrifuges
1. Gas centrifuges;
2. Complete rotor assemblies; Thin-walled cylinders, or a number of interconnected
thin-walled cylinders, manufactured from one or more of the high strength-to-
density ratio materials described in the Note-1 in 0B005.a. If interconnected, the
cylinders are joined together by flexible bellows or rings as described in 0B005.a.4.
The rotor is fitted with an internal baffle(s) and end caps, as described in 0B005.a.5
and 0B005.a.6.
3. Rotor tube cylinders: Especially designed or prepared thin-walled cylinders with
thickness of 12 mm or less, a diameter of between 75 mm and 650 mm, and
manufactured from one or more of ‘high strength-to-density ratio materials’
described in the Note-1 in 0B005.a;
4. Rings or bellows: Rings or bellows with wall thickness of 3 mm or less and a
diameter of between 75 mm and 650 mm especially designed to give local support
to a rotor tube or to join together a number of rotor tubes, made from ‘high strength-
to-density ratio materials’ described in the Note-1 in 0B005.a.
5. Baffles: Disc-shaped components of between 75 mm and 650 mm diameter
especially designed or prepared for mounting inside a rotor tube, in order to isolate
the take-off chamber from the main separation chamber and manufactured from
‘high strength-to-density ratio materials’ described in the Note-1 in 0B005.a.
6. Top or bottom caps: Especially designed or prepared disc-shaped components of
between 75 mm and 400 mm diameter especially designed or prepared to fit the
ends of a rotor tube, and so contain the UF within the rotor tube, and in some cases
6
to support, retain or contain as an integrated part an element of the upper bearing
(top cap) or to carry the rotating elements of the motor and lower bearing (bottom
cap), and manufactured from ‘high strength-to-density ratio materials’ described in
the Note-1 in 0B005.a;
7. Especially prepared Magnetic Suspension Bearings with both of the following
attributes:
a. Bearing assemblies consisting of an annular magnet suspended within a housing
made of or protected by “materials resistant to corrosion by UF ” (see Note 3 of
6
0B005) containing a damping medium and having the magnet coupling with a
pole piece or second magnet fitted to the top cap of the rotor;
b. Active magnetic bearings especially designed or prepared for use with gas
centrifuges. These bearings usually have the following characteristics: i)
Designed to keep centred a rotor spinning at 600 Hz or more; and ii) Associated
to a reliable electrical power supply and/or to an uninterruptible power supply
(UPS) unit in order to function for more than one hour.
8. Bearings / Dampers: Especially designed or prepared bearings comprising a
pivot/cup assembly mounted on a damper. The pivot is normally a hardened steel
shaft with a hemisphere at one end with a means of attachment to the bottom cap
described in 0B005.a.6 at the other. The shaft may however have a hydrodynamic
bearing attached. The cup is pellet-shaped with a hemispherical indentation in one
surface. These components are often supplied separately to the damper.38 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
9. Molecular pumps: Molecular pumps are high vacuum pumps consisting of
especially designed or prepared cylinders having internally machined or extruded
helical grooves and internally machined bores. Typical dimensions are as follows:
75 mm to 650 mm internal diameter, 10 mm or more wall thickness, with the length
equal to or greater than the diameter. The grooves are typically rectangular in cross-
section and 2 mm or more in depth.
10. Ring-shaped motor stators: Especially designed or prepared ring-shaped stators for
high speed multiphase AC hysteresis (or reluctance) motors for synchronous
operation within a vacuum at a frequency of 600 Hz or greater and a power of 40
VA or greater. The stators may consist of multi-phase windings on a laminated low
loss iron core comprised of thin layers typically 2.0 mm thick or less.
11. Centrifuge housing/recipients to contain the rotor tube assembly of a gas centrifuge
consisting of rigid cylinder of wall thickness up to 30 mm with precision machined
ends that are parallel to each other and perpendicular to the cylinder's longitudinal
axis to within 0,05 degrees or less.
12. Scoops consisting of tubes for the extraction of UF gas from within the rotor tube
6
by a Pitot tube action and capable of being fixed to the central gas extraction
system.
Note 1: The high strength-to-density ratio materials used for centrifuge rotating
components include the following:
(a) Maraging steel capable of an ultimate tensile strength of 1.95 GPa or more;
(b) Aluminium alloys capable of an ultimate tensile strength of 0.46 GPa or
more;
(c) Filamentary materials suitable for use in composite structures and having a
specific modulus of 3.18 X 106 m or greater and a specific ultimate tensile
strength of 7.62 X 104 m or greater.
Note 2: 'Specific Modulus' is the Young's Modulus in N/m2 divided by the specific
weight in N/m3; 'Specific Ultimate Tensile Strength' is the ultimate tensile strength in
N/m2 divided by the specific weight in N/ m3.
b. Especially designed or prepared auxiliary systems, equipment and components for
gas centrifuge enrichment plants
1. Machine header piping systems for handling UF within the centrifuge cascades;
6
2. Frequency changers (converters or inverters) especially designed or prepared to
supply motor stators for gas centrifuge enrichment, having all of the following
characteristics, and especially designed components therefor:
a. A multiphase frequency output of 600 Hz or greater; and
b. High stability (with frequency control better than 0.2 %).
c. Especially designed or prepared assemblies and components for use in gaseous
diffusion enrichment
1. Gaseous diffusion barriers and barrier materials resistant to corrosion by UF
6
described in the Note-3 in 0B005;
2. Gaseous diffuser housings made of or protected by materials resistant to corrosion
by UF described in the Note-3 in 0B005;
6
3. Compressors (positive displacement, centrifugal and axial flow types) or gas
blowers with a suction volume capacity of 1 m3 /min or more of UF , discharge
6
pressure up to 500 kPa and having a pressure ratio of 10:1 or less designed for long
term operation in the UF environment and made of or protected by materials
6
resistant to corrosion by UF described in the Note-3 in 0B005.
6¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 39
d. Especially designed or prepared auxiliary systems, equipment and components for
use in gaseous diffusion enrichment:
Piping systems and header systems for handling UF within the gaseous diffusion
6
cascades.
e. Especially designed or prepared systems, equipment and components for use in
aerodynamic enrichment plants:
1. Especially designed or prepared separation nozzles and assemblies thereof. The
separation nozzles consist of slit-shaped, curved channels having a radius of
curvature less than 1 mm, made of materials resistant to corrosion by UF described
6
in the Note-3 in 0B005 and having a knife-edge within the nozzle that separates the
gas flowing through the nozzle into two fractions;
2. Especially designed or prepared vortex tubes and assemblies thereof. The vortex
tubes are cylindrical or tapered, made of or protected by materials resistant to
corrosion by UF described in the Note-3 in 0B005 and with one or more tangential
6
inlets. The tubes may be equipped with nozzle type appendages at either or both
ends;
3. Especially designed or prepared compressors or gas-blowers made of or protected
by materials resistant to corrosion by the UF (see the Note-3 in 0B005) / carrier
6
gas (hydrogen or helium) mixture;
4. Especially designed or prepared separation element housings made of or protected
by materials resistant to corrosion by UF described in the Note-3 in 0B005, for
6
containing vortex tubes or separation nozzles;
5. Especially designed or prepared header-piping systems, made of or protected by
materials resistant to corrosion by UF described in the Note-3 in 0B005, for
6
handling UF within the aerodynamic cascades;
6
6. UF /carrier gas separation systems for separating UF from carrier gas (hydrogen or
6 6
helium).
f. Especially designed or prepared systems, equipment and components for use in
chemical exchange or ion exchange enrichment plants.
1. Countercurrent Liquid-liquid exchange columns (Chemical exchange), having
mechanical power input, especially designed or prepared for uranium enrichment
using the chemical exchange process. For corrosion resistance to concentrated
hydrochloric acid solutions, these columns and their internals are normally made of
or protected by materials resistant to corrosion by concentrated hydrochloric acid
solutions. The stage residence time of the columns is normally designed to be 30
seconds or less.
2. Liquid-liquid centrifugal contactors (Chemical exchange), especially designed or
prepared for uranium enrichment using the chemical exchange process. Such
contractors are made of or protected by materials resistant to corrosion by
concentrated hydrochloric acid solutions, The stage residence time of the columns is
normally designed to be 30 seconds or less.
3. Uranium reduction systems and equipment (Chemical exchange):
a. Especially designed or prepared electrochemical reduction cells to reduce
uranium from one valence state to another for uranium enrichment using the
chemical exchange process. The cell materials in contact with process
solutions must be corrosion resistant to concentrated hydrochloric acid40 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
solutions;
b. Especially designed or prepared systems consisting of solvent extraction
equipment and pumps or other transfer devices at the product end of the
cascade for taking the U+4 out of the organic stream.
4. Feed preparation systems (Chemical exchange) consisting of dissolution, solvent
extraction and/or ion exchange equipment for producing high-purity uranium
chloride.
5. Uranium oxidation systems (Chemical exchange) for oxidation of U+3 to U+4
6. Fast-reacting ion exchange resins/adsorbents (Ion exchange):
Fast-reacting ion-exchange resins or adsorbents, especially designed or prepared
for uranium enrichment using the chemical exchange process, including porous
macroreticular resins, and/or pellicular structures and other composite structures
in any suitable form including particles or fibres chemically resistant to
concentrated hydrochloric acid solutions.
7. Ion exchange columns (Ion exchange):
Cylindrical columns for containing and supporting packed beds of ion exchange
resin/adsorbent and made of or protected by materials resistant to corrosion by
concentrated hydrochloric acid solutions.
8. Ion exchange reflux systems (Ion exchange):
Chemical or electrochemical oxidation or reduction systems for regeneration of
the chemical oxidizing or reducing agent(s) used in ion exchange enrichment
cascades.
g. Especially designed or prepared systems, equipment and components for use in laser-
based enrichment plants.
1. Uranium vaporization systems (atomic vapour based methods)
2. Liquid or vapour uranium metal handling systems and components (atomic vapour
based methods)
3. Uranium metal ‘product’ and ‘tails’ collector assemblies (atomic vapour based
methods)
4. Separator module housings (atomic vapour based methods)
5. Supersonic expansion nozzles (molecular based methods)
6. ‘Product’ or ‘tails’ collectors (molecular based methods)
7. UF /carrier gas compressors (molecular based methods)
6
8. Rotary shaft seals (molecular based methods)
9. Fluorination systems (molecular based methods)
10. UF /carrier gas separation systems (molecular based methods)
6
11. ‘Lasers’ or ‘laser systems or components’ for the separation of uranium isotopes.
h. Especially designed or prepared systems, equipment and components for use in
plasma separation enrichment plants
1. Microwave power sources and antennae: Especially designed or prepared
microwave power sources and antennae for producing or accelerating ions and
having the following characteristics: greater than 30 GHz frequency and greater
than 50 kW mean power output for ion production.
2. Radio frequency ion excitation coils for frequencies of more than 100 kHz
3. Uranium plasma generation systems
4. Uranium metal ‘product’ and ‘tails’ collector assemblies made of or protected by
materials resistant to the heat and corrosion of uranium metal vapour.¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 41
5. Separator module housings (cylindrical vessels) for containing the uranium plasma
source, radio-frequency drive coil and the ‘product’ and ‘tails’ collectors.
i. Especially designed or prepared systems, equipment and components for use in
electromagnetic enrichment plants.
1. Electromagnetic isotope separators for separation of uranium isotopes and
equipment and components therefor, including ion sources (consisting of a
vapour source, ionizer, and beam accelerator), ion collectors (consisting of
collector plates), vacuum housings and magnet pole pieces;
2. High voltage power supplies for ion sources: Especially designed or prepared
high-voltage power supplies for ion sources, having all of the following
characteristics: capable of continuous operation, output voltage of 20,000 V or
greater, output current of 1 A or greater, and voltage regulation of better than
0.01% over a time period of 8 hours
3. High-power, direct current magnet power supplies: Especially designed or
prepared high-power, direct current magnet power supplies having all of the
following characteristics: capable of continuously producing a current output of
500 A or greater at a voltage of 100 V or greater and with a current or voltage
regulation better than 0.01% over a period of 8 hours.
j. Especially designed or prepared other equipment and components for use in
enrichment plants:
1. Feed systems / product and tails withdrawal systems such as feed autoclaves, ovens,
or systems, desublimers, cold traps or pumps, solidification or liquefaction stations,
‘product’ or ‘tails’ stations used for handling UF ;
6
2. Special shut-off valves, control valves, bellow sealed valves, manual or automated,
shut-off or control, made of or protected by materials resistant to corrosion by UF ;
6
3. UF mass spectrometers / ion sources capable of taking on-line samples from UF
6 6
gas stream; ;
4. Rotary shaft seals for compressors or blowers;
5. Heat exchangers made of or protected by “materials resistant to corrosion by UF ”;
6
6. Vacuum systems including vacuum manifolds, vacuum headers and vacuum pumps
made of, or protected by, materials resistant to corrosion by UF
6.
Notes to 0B005:
1: Controls under 0B005 also apply to the plants and equipment that are intended for
isotope separation of other elements.
2: “Other elements” means all elements other than hydrogen, uranium and plutonium.
3: Materials resistant to corrosion by UF include copper, copper alloys, stainless steel,
6
aluminium, aluminium oxide, aluminium alloys, nickel or alloys containing 60% or
more nickel and fluorinated hydrocarbon polymers.
0B006 Plants for the fabrication of nuclear reactor fuel elements, and equipment especially
designed or prepared therefor including but not limited to:
a. fully automatic pellet inspection stations especially designed or prepared for
checking final dimensions and surface defects of the fuel pellets;
b. automatic welding machines especially designed or prepared for welding end
caps onto the fuel pins (or rods);
c. automatic test and inspection stations especially designed or prepared for
checking the integrity of completed fuel pins (or rods);
d. systems especially designed or prepared to manufacture nuclear fuel cladding.42 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
Item ‘c’ typically includes equipment for: 1) x-ray examination of pin (or rod) end cap
welds, 2) helium leak detection from pressurized pins (or rods), and 3) gamma-ray
scanning of the pins (or rods) to check for correct loading of the fuel pellets inside.
0B007 Plants or systems for production, handling, storage and transportation of Radioisotopes
in quantities exceeding 100 Curies (3.7 X 1012 Becquerel).
0B008 Neutron generators including neutron chain reacting assemblies and fusion assemblies
of all kinds for producing fissile materials.
0C Technology and software
Technology and software for the development, production or use of prescribed
substances or prescribed equipment specified in 0A or 0B. ”
B. For SCOMET 3A103, the following shall be substituted:-
“3A103 Tungsten , molybdenum, and alloys of those metals in particulate form and a
particle size of 50 x10-6 m (50 µm) or less; ”
C. For SCOMET 3A107, the following shall be substituted:-
“3A107 Titanium-stabilised Duplex Stainless Steel (Ti-DSS) ”
D. For SCOMET 3A114, the following shall be substituted:-
“3A114 a. Nickel powder of purity 99.0% or greater by weight; and having a mean
particle size of less than 10 µm measured by the ASTM B 330 standard;
b. Porous nickel metal produced from the nickel powder specified above ”
E. After SCOMET 3A117 and the entry relating thereto, the following shall be inserted:-
“3A118 Titanium alloys having both of the following characteristics:
a. Capable of’ an ultimate tensile strength of 900 MPa or more at 293 K (20
degrees C); and
b. In the form of tubes or cylindrical solid forms (including forgings) with an
outside diameter of more than 75 mm.
Technical note: The phrase ‘capable of’ encompasses titanium alloys before or after
heat treatment
3A119 Rhenium, and alloys containing 90% by weight or more rhenium; and alloys of rhenium and
tungsten containing 90% by weight or more of any combination of rhenium and tungsten,
have both of the following characteristics:
a. In forms with a hollow cylindrical symmetry (including cylinder segments) with
an inside diameter between 100 and 300 mm; and
b. A mass greater than 20kg
3A120 Technology and Software
Technology and software for the development, production or use of items specified in
3A1 or 3A4 ”¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 43
F. For SCOMET 3A401, the following shall be substituted
“ 3A401 High explosive substances or mixtures, containing more than 2 % by
weight of any of the following:
a. Cyclotetramethylenetetranitramine (HMX ) (CAS 2691-41-0);
b. Cyclotrimethylenetrinitramine (RDX) (CAS 121-82-4);
c. Triaminotrinitrobenzene (TATB) (CAS 3058-38-6);
d. Aminodinitrobenzo-furoxan or 7-amino-4,6 nitrobenzofurazane-1-oxide
(ADNBF) (CAS 97096-78-1);
e. 1,1-diamino-2,2-dinitroethylene (DADE or FOX7) (CAS 145250-81-3);
f. 2,4-dinitroimidazole (DNI) (CAS 5213-49-0);
g. Diaminoazoxyfurazan (DAAOF or DAAF) (CAS 78644-89-0);
h. Diaminotrinitrobenzene (DATB) (CAS 1630-08-6);
i. Dinitroglycoluril (DNGU or DINGU) (CAS 55510-04-8);
j. 2,6-Bis (picrylamino)-3,5-dinitropyridine (PYX) (CAS 38082-89-2);
k. 3,3′-diamino-2,2′,4,4′,6,6′-hexanitrobiphenyl or dipicramide (DIPAM) (CAS
17215-44-0);
l. Diaminoazofurazan (DAAzF) (CAS 78644-90-3);
m. 1,4,5,8-tetranitro-pyridazino[4,5-d] pyridazine (TNP) (CAS 229176-04-9);
n. Hexanitrostilbene (HNS) (CAS 20062-22-0); or
o. Any explosive with a crystal density greater than 1.8 g/cm3 and having a
detonation velocity greater than 8000 m/s.
Note: License applications for the export of items at 3A401a and 3A401b will normally be denied. ”
G. SCOMET Category 4A, 4B and 4C and the entries relating thereto shall be substituted as
follows:-
“4A Equipment, assemblies, components including test and production equipment
4A001 Flow-forming machines, spin-forming machines capable of flow-forming
functions, and mandrels, as follows:
a. For flow forming machines refer to 5A205
b. Spin forming machines having both of the following characteristics:
1. Three or more rollers (active or guiding); and
2. Which, according to the manufacturer’s technical specification, can be
equipped with ‘numerical control’ units or a computer control.
c. Rotor-forming mandrels designed to form cylindrical rotors of inside diameter
between 75 and 400 mm.
Note:
Item 4A001a and 4A001b include machines which have only a single roller designed
to deform metal plus two auxiliary rollers which support the mandrel, but do not
participate directly in the deformation process.44 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
4A002 Machine tools, as follows, and any combination thereof, for removing or cutting metals,
ceramics, or composites, which, according to the manufacturer’s technical specifications,
can be equipped with electronic devices for simultaneous “contouring control” in two or
more axes;
N.B.: For “numerical control” units controlled by their associated “software”, see
Item 4C
a. Machine tools for turning, that have “positioning accuracies” with all
compensations available better (less) than 6 µm according to ISO 230/2 (1988)
along any linear axis (overall positioning) for machines capable of machining
diameters greater than 35 mm;
Note: Item 4A002.a. does not control bar machines (Swissturn), limited to
machining only bar feed thru, if maximum bar diameter is equal to or
less than 42 mm and there is no capability of mounting chucks.
Machines may have drilling and/or milling capabilities for machining
parts with diameters less than 42 mm.
b. Machine tools for milling, having any of the following characteristics:
1. “Positioning accuracies” with all compensations available better
(less) than 6 µm according to ISO 230/2 (1988) along any linear
axis (overall positioning);
2. Two or more contouring rotary axes; or
3. Five or more axes which can be coordinated simultaneously for “contouring
control”.
Note: Item 4A002.b. does not control milling machines having both
of the following characteristics:
1. X-axis travel greater than 2 m; and
2. Overall “positioning accuracy” on the x-axis worse (more)
than 30 µm according to ISO 230/2 (1988).
c. Machine tools for grinding, having any of the following characteristics:
1. “Positioning accuracies” with all compensations available better
(less) than 4 µm according to ISO 230/2 (1988) along any linear
axis (overall positioning);
2. Two or more contouring rotary axes; or
3 Five or more axes which can be coordinated simultaneously for
“contouring control”.
Note: Item 4A002.c. does not control grinding machines as follows:
1. Cylindrical external, internal, and external-internal grinding
machines having all the following characteristics:
a. Limited to a maximum workpiece capacity of 150 mm
outside diameter or length; and
b. Axes limited to x, z and c.
2. Jig grinders that do not have a z-axis or a w-axis with an overall
positioning accuracy less (better) than 4 microns. Positioning accuracy
is according to ISO 230/2 (1988).¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 45
d. Non-wire type Electrical Discharge Machines (EDM) that have two or more
contouring rotary axes and that can be coordinated simultaneously for “contouring
control”.
Notes: 1. Stated “positioning accuracy” levels derived under the following
procedures from measurements made according to ISO 230/2 (1988) or
national equivalents may be used for each machine tool model if
provided to, and accepted by, national authorities instead of individual
machine tests.
Stated “positioning accuracy” are to be derived as follows:
a. Select five machines of a model to be evaluated;
b. Measure the linear axis accuracies according to ISO 230/2 (1988)
c. Determine the accuracy values (A) for each axis of each machine. The
method of calculating the accuracy value is described in the ISO 230/2
(1988) standard;
d. Determine the average accuracy value of each axis. This average value
becomes the stated “positioning accuracy” of each axis for the model (Â ,
x
 ...);
y
e. Since Item 4A002 refers to each linear axis, there will be as many stated
“positioning accuracy” values as there are linear axes;
f. If any axis of a machine tool not controlled by Items 4A002.a., 4A002.b.,
or 4A002.c. has a stated “positioning accuracy” of 6 µm or better (less) for
grinding machines, and 8 µm or better (less) for milling and turning
machines, both according to ISO 230/2 (1988), then the builder should be
required to reaffirm the accuracy level once every eighteen months.
2. Item 4A002. does not control special purpose machine tools limited to the
manufacture of any of the following parts:
a. Gears
b. Crankshafts or cam shafts
c. Tools or cutters
d. Extruder worms
Technical Notes:1. Axis nomenclature shall be in accordance with International
Standard ISO 841, “Numerical Control Machines - Axis and
Motion Nomenclature”.
2. Not counted in the total number of contouring axes are
secondary parallel contouring axes (e.g., the w-axis on
horizontal boring mills or a secondary rotary axis the
centerline of which is parallel to the primary rotary axis).
3. Rotary axes do not necessarily have to rotate over 360
degrees. A rotary axis can be driven by a linear device,
e.g., a screw or a rack-and-pinion.
4. For the purposes of 4A002. the number of axes which can be coordinated
simultaneously for “contouring control” is the number of axes along or
around which, during processing of the workpiece, simultaneous and46 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
interrelated motions are performed between the workpiece and a tool. This
does not include any additional axes along or around which other relative
motions within the machine are performed, such as:
a. Wheel-dressing systems in grinding machines;
b. Parallel rotary axes designed for mounting of separate workpieces;
c. Co-linear rotary axes designed for manipulating the same workpiece by
holding it in a chuck from different ends.
5. A machine tool having at least 2 of the 3 turning, milling or grinding
capabilities (e.g., a turning machine with milling capability) must be
evaluated against each applicable entry, 4A002.a., 4A002.b. and 4A002.c.
6. Items 4A002.b.3 and 4A002.c.3 include machines based on a parallel linear
kinematic design (e.g., hexapods) that have 5 or more axes none of which are
rotary axes.
4A003 Dimensional inspection machines, instruments, or systems, as follows:
a. Computer controlled or numerically controlled coordinate measuring machines
(CMM) having either of the following characteristics:
1. Having only two axes and having a maximum permissible error of length
measurement along any axis (one dimensional), identified as any combination
of E0x MPE, E0y MPE or E0z MPE, equal to or less(better) than (1.25 +
L/1000) µm (where L is the measured length in mm) at any point within the
operating range of the machine (i.e., within the length of the axis), according
to ISO 10360-2(2009); or
2. Three or more axes and having a three dimensional (volumetric) maximum
permissible error of length measurement (E0, MPE equal to or less (better)
than (1.7 + L/800) µm (where L is the measured length in mm) at any point
within the operating range of the machine (i.e., within the length of the axis),
according to ISO 10360-2(2009).
Technical Note: The E0, MPE of the most accurate configuration of the
CMM specified according to ISO 10360-2(2009) by the manufacturer (e.g.,
best of the following: probe stylus length, motion parameters, environment)
and with all compensations available shall be compared to the 1.7 + L/ 800
µm threshold.
b. Linear displacement measuring instruments, as follows:
1. Non-contact type measuring systems with a “resolution” equal to or better
(less) than 0.2 µm within a measuring range up to 0.2 mm;
2. Linear variable differential transformer (LVDT) systems having both of
the following characteristics:
a. 1. “Linearity” equal to or less (better) than 0.1% measured from 0 to
the full operating range, for LVDTs with an operating range up
to 5 mm; or
2. “Linearity” equal to or less (better) than 0.1% measured from 0
to 5 mm for LVDTs with an operating range greater than 5 mm;
and
b. Drift equal to or better (less) than 0.1% per day at a standard ambient test
room temperature ± 1 K;¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 47
3. Measuring systems having both of the following characteristics:
a. Contain a laser; and
b. Maintain for at least 12 hours, over a temperature range of ± 1 K
around a standard temperature and a standard pressure:
1. A “resolution” over their full scale of 0.1 µm or better; and
2. With a “measurement uncertainty” equal to or better
(less) than (0.2 + L/2000) µm (L is the measured length
in millimeters);
Note: Item 1.B.3.b.3. does not control measuring interferometer systems,
without closed or open loop feedback, containing a laser to
measure slide movement errors of machine tools, dimensional
inspection machines, or similar equipment.
Technical Note: In Item 1.B.3.b. ‘linear displacement’ means the
change of distance between the measuring probe and
the measured object.
c. Angular displacement measuring instruments having an “angular position
deviation” equal to or better (less) than 0.00025°;
Note: Item 1.B.3.c. does not control optical instruments, such as
autocollimators, using collimated light (e.g., laser light) to detect angular
displacement of a mirror.
d. Systems for simultaneous linear-angular inspection of hemishells, having
both of the following characteristics:
1. “Measurement uncertainty” along any linear axis equal to or better (less)
than 3.5 µm per 5 mm; and
2. “Angular position deviation” equal to or less than 0.02°.
Notes: 1. Item 1.B.3. includes machine tools that can be used as measuring
machines if they meet or exceed the criteria specified for the
measuring machine function.
2. Machines described in Item 1.B.3. are controlled if they exceed the
threshold specified anywhere within their operating range.
Technical Note: All parameters of measurement values in this item represent
plus/minus, i.e., not total band.
4A004 Controlled atmosphere (vacuum or inert gas) induction furnaces, and
power supplies therefor, as follows:
a. Furnaces having all of the following characteristics:
1. Capable of operation at temperatures above 1123 K (850 °C);
2. Induction coils 600 mm or less in diameter; and
3. Designed for power inputs of 5 kW or more;
Note: Item 4A004.a. does not control furnaces designed for the processing of
semiconductor wafers.
b. Power supplies, with a specified output power of 5 kW or more, specially
designed for furnaces specified in Item 4A004.a.48 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
4A005 Isostatic presses’, and related equipment, as follows:
a. ‘Isostatic presses’ as specified in 5A208;
b. Dies, moulds, and controls specially designed for the ‘isostatic presses’
specified in Item 4A005.a.
Technical Notes:
1. In Item 4A005 ´Isostatic presses’ means equipment capable of pressurizing a
closed cavity through various media (gas, liquid, solid particles, etc.) to create
equal pressure in all directions within the cavity upon a work piece or
material.
2. In Item 4A005 the inside chamber dimension is that of the chamber in which
both the working temperature and the working pressure are achieved and does
not include fixtures. That dimension will be the smaller of either the inside
diameter of the pressure chamber or the inside diameter of the insulated
furnace chamber, depending on which of the two chambers is located inside
the other.
4A006 Vibration test systems, equipment, and components as follows:
a. Electrodynamic vibration test systems, having all of the following
characteristics:
1. Employing feedback or closed loop control techniques and incorporating a
digital control unit;
2. Capable of vibrating at 10 g RMS or more between 20 and 2000 Hz; and
3. Capable of imparting forces of 50 kN or greater measured ‘bare table’;
b. Digital control units, combined with ‘software’ specially designed for vibration
testing, with a real-time bandwidth greater than 5 kHz and being designed for a
system specified in Item 4A006.a.;
c. Vibration thrusters (shaker units), with or without associated amplifiers, capable
of imparting a force of 50 kN or greater measured ‘bare table’, which are usable
for the systems specified in Item 4A006.a.;
d. Test piece support structures and electronic units designed to combine multiple
shaker units into a complete shaker system capable of providing an effective
combined force of 50 kN or greater, measured ‘bare table,’ which are usable for
the systems specified in Item 4A006.a..
Technical Note: In Item 4A006 ‘bare table’ means a flat table, or surface, with no
fixtures or fittings.
4A007 Vacuum or other controlled atmosphere metallurgical melting and casting
furnaces and related equipment, as follows:
a. Arc re-melt and casting furnaces having both of the following
characteristics:
1. Consumable electrode capacities between 1000 and 20000 cm3; and
2. Capable of operating with melting temperatures above 1973 K (1700
°C);
b. Electron beam melting furnaces and plasma atomisation and melting
furnaces, having both of the following characteristics:
1. A power of 50 kW or greater; and¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 49
2. Capable of operating with melting temperatures above 1473 K
(1200 °C);
c. Computer control and monitoring systems specially configured for any of
the furnaces specified in Item 4A007.a. or 4A007.b.
4A008 Crucibles made of materials resistant to liquid actinide metals, as follows:
a. Crucibles having both of the following characteristics:
1. A volume of between 150 cm3 (150 ml) and 8000 cm3 (8 litres); and
2. Made of or coated with any of the following materials, or combination of the
following materials, having an overall impurity level of 2% or less by weight:
a. Calcium fluoride (CaF );
2
b. Calcium zirconate (metazirconate) (CaZrO );
3
c. Cerium sulphide (Ce S );
2 3
d. Erbium oxide (erbia) (Er O );
2 3
e. Hafnium oxide (hafnia) (HfO );
2
f. Magnesium oxide (MgO);
g. Nitrided niobium-titanium-tungsten alloy (approximately 50% Nb, 30% Ti, 20%
W);
h. Yttrium oxide (yttria) (Y O ); or
2 3
i. Zirconium oxide (zirconia) (ZrO );
2
b. Crucibles having both of the following characteristics:
1. A volume of between 50 cm3 (50 ml) and 2000 cm3 (2 litres); and
2. Made of or lined with tantalum, having a purity of 99.9% or greater by weight;
c. Crucibles having all of the following characteristics:
1. A volume of between 50 cm3 (50 ml) and 2000 cm3 (2 litres);
2. Made of or lined with tantalum, having a purity of 98% or greater by weight; and
3. Coated with tantalum carbide, nitride, boride, or any combination thereof.
4A009 Platinized catalysts specially designed or prepared for promoting the
hydrogen isotope exchange reaction between hydrogen and water for the
recovery of tritium from heavy water or for the production of heavy water.
4A010 Composite structures in the form of tubes having both of the following
characteristics:
a. An inside diameter of between 75 and 400 mm; and
b. Made with any of the materials specified in Item 3A116.
4A011 Frequency changers or generators, usable as a variable frequency or fixed
frequency motor drive, having all of the following characteristics:
N.B.1: Frequency changers and generators specially designed or prepared for the gas
centrifuge process are controlled under Prescribe Equipment (0B)
N.B.2: “Software” specially designed to enhance or release the performance of
frequency changers or generators to meet the characteristics below is
controlled (see Item 4C).50 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
a. Multiphase output providing a power of 40 VA or greater;
b. Operating at a frequency of 600 Hz or more; and
c. Frequency control better (less) than 0.2%.
Notes: 1. Item 4A011 only controls frequency changers intended for specific
industrial machinery and/or consumer goods (machine tools, vehicles,
etc.) if the frequency changers can meet the characteristics above when
removed,
2. For the purpose of export control, the Government will determine
whether or not a particular frequency changer meets the characteristics
above, taking into account hardware and software constraints.
Technical Notes: 1. Frequency changers in Item 4A011. are also known
as converters or inverters.
2. The characteristics specified in item 4A011 may be met by
certain equipment marketed such as: Generators,
Electronic Test Equipment, AC Power Supplies, Variable
Speed Motor Drives, Variable Speed Drives (VSDs),
Variable Frequency Drives (VFDs), Adjustable Frequency
Drives (AFDs), or Adjustable Speed Drives (ASDs).
4A012 Lasers, laser amplifiers and oscillators as follows:
a. Copper vapour lasers having both of the following characteristics:
1. Operating at wavelengths between 500 and 600 nm; and
2. An average output power equal to or greater than 40 W;
b. Argon ion lasers having both of the following characteristics:
1. Operating at wavelengths between 400 and 515 nm; and
2. An average output power greater than 40 W;
c. Neodymium-doped (other than glass) lasers with an output wavelength between
1000 and 1100 nm having either of the following:
1. Pulse-excited and Q-switched with a pulse duration equal to or greater than 1
ns, and having either of the following:
a. A single-transverse mode output with an average output power greater
than 40 W; or
b. A multiple-transverse mode output with an average output power greater
than 50 W;
or
2. Incorporating frequency doubling to give an output wavelength between 500
and 550 nm with an average output power of greater than 40 W;
d. Tuneable pulsed single-mode dye laser oscillators having all of the following
characteristics:
1. Operating at wavelengths between 300 and 800 nm;
2. An average output power greater than 1 W;
3. A repetition rate greater than 1 kHz; and¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 51
4. Pulse width less than 100 ns;
e. Tuneable pulsed dye laser amplifiers and oscillators having all of the following
characteristics:
1. Operating at wavelengths between 300 and 800 nm;
2. An average output power greater than 30 W;
3. A repetition rate greater than 1 kHz; and
4. Pulse width less than 100 ns;
Note: Item 4A012e does not control single mode oscillators.
f. Alexandrite lasers having all of the following characteristics:
1. Operating at wavelengths between 720 and 800 nm;
2. A bandwidth of 0.005 nm or less;
3. A repetition rate greater than 125 Hz; and
4. An average output power greater than 30 W;
g. Pulsed carbon dioxide lasers having all of the following characteristics:
1. Operating at wavelengths between 9000 and 11000 nm;
2. A repetition rate greater than 250 Hz;
3. An average output power greater than 500 W; and
4. Pulse width of less than 200 ns;
Note: Item 4A012g does not control the higher power (typically 1 to 5 1kW)
industrial CO lasers used in applications such as cutting and welding, as
2
these latter lasers are either continuous wave or are pulsed with a pulse
width greater than 200 ns.
h. Pulsed excimer lasers (XeF, XeCl, KrF) having all of the following
characteristics:
1. Operating at wavelengths between 240 and 360 nm;
2. A repetition rate greater than 250 Hz; and
3. An average output power greater than 500 W;
i. Para-hydrogen Raman shifters designed to operate at 16 µm output wavelength
and at a repetition rate greater than 250 Hz.
j. Pulsed carbon monoxide lasers having all of the following characteristics:
1. Operating at wavelengths between 5000 and 6000 nm;
2. A repetition rate greater than 250 Hz;
3. An average output power greater than 200 W; and
4. Pulse width of less than 200 ns.
Note: Item 4A012.j. does not control the higher power (typically 1 to 5 kW)
industrial CO lasers used in applications such as cutting and welding, as
these latter lasers are either continuous wave or are pulsed with a pulse
width greater than 200 ns.52 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
4A013 Valves having all of the following characteristics:
a. A nominal size of 5 mm or greater;
b. Having a bellows seal; and
c. Wholly made of or lined with aluminium, aluminium alloy, nickel, or nickel alloy
containing more than 60% nickel by weight.
Technical Note: For valves with different inlet and outlet diameter, the nominal size
parameter in Item 4A013a refers to the smallest diameter.
4A014 Superconducting solenoidal electromagnets having all of the following
characteristics:
a. Capable of creating magnetic fields greater than 2 T;
b. A ratio of length to inner diameter greater than 2;
c. Inner diameter greater than 300 mm; and
d. Magnetic field uniform to better than 1% over the central 50% of the inner
volume.
Note: Item 4A014 does not control magnets specially designed for and exported as
part of medical nuclear magnetic resonance (NMR) imaging systems. (‘As
part of’ does not necessarily mean physical part in the same shipment.
Separate shipments from different sources are allowed, provided the related
export documents clearly specify the ‘as part of” relationship.)
4A015 High-power direct current power supplies having both of the following
characteristics:
a. Capable of continuously producing, over a time period of 8 hours, 100 V or
greater with current output of 500 A or greater; and
b. Current or voltage stability better than 0.1% over a time period of 8 hours
4A016 High-voltage direct current power supplies having both of the following
characteristics:
a. Capable of continuously producing, over a time period of 8 hours, 20 kV or
greater with current output of 1 A or greater; and
b. Current or voltage stability better than 0.1% over a time period of 8 hours.
4A017 All types of pressure transducers capable of measuring absolute pressures and
having all of the following characteristics:
a. Pressure sensing elements made of or protected by aluminium, aluminium
alloy, aluminium oxide (alumina or sapphire), nickel, nickel alloy with more
than 60% nickel by weight, or fully fluorinated hydrocarbon polymers;
b. Seals, if any, essential for sealing the pressure sensing element, and in direct
contact with the process medium, made of or protected by aluminium,
aluminium alloy, aluminium oxide (alumina or sapphire), nickel, nickel alloy
with more than 60% nickel by weight, or fully fluorinated hydrocarbon
polymers; and
c. Having either of the following characteristics:
1. A full scale of less than 13 kPa and an “accuracy” of better than ± 1% of full
scale; or¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 53
2. A full scale of 13 kPa or greater and an “accuracy” of better than ± 130
Pa when measuring at 13 kPa.
Technical Notes: 1. In Item 4A017. pressure transducers are devices that
convert pressure measurements into a signal.
2. In Item 4A017. “accuracy” includes non-linearity,
hysteresis and repeatability at ambient
temperature.
4A018 Vacuum pumps having all of the following characteristics:
a. Input throat size equal to or greater than 380 mm;
b. Pumping speed equal to or greater than 15 m3/s; and
c. Capable of producing an ultimate vacuum better than 13.3 mPa.
Technical Notes:
1. The pumping speed is determined at the measurement point with
nitrogen gas or air.
2. The ultimate vacuum is determined at the input of the pump with the
input of the pump blocked off.
4A019 Electrolytic cells for fluorine production with an output capacity greater
than 250 g of fluorine per hour.
4A020 Rotor fabrication or assembly equipment, rotor straightening equipment,
bellows-forming mandrels and dies, as follows:
a. Rotor assembly equipment for assembly of gas centrifuge rotor tube sections,
baffles, and end caps; Note: Item 4A020a includes precision mandrels, clamps,
and shrink fit machines.
b. Rotor straightening equipment for alignment of gas centrifuge rotor tube sections
to a common axis;
Technical Note: In Item 4A020b such equipment normally consists of precision
measuring probes linked to a computer that subsequently
controls the action of, for example, pneumatic rams used for
aligning the rotor tube sections.
c. Bellows-forming mandrels and dies for producing single -convolution bellows.
Technical Note: The bellows referred to in Item 4A020c have all of the following
characteristics:
1. Inside diameter between 75 and 400 mm;
2. Length equal to or greater than 12.7 mm;
3. Single convolution depth greater than 2 mm; and
4. Made of high-strength aluminium alloys, maraging steel, or
high strength fibrous or filamentary materials.
4A021 Centrifugal multi-plane balancing machines, fixed or portable, horizontal or
vertical, as follows:
a. Centrifugal balancing machines designed for balancing flexible rotors having a
length of 600 mm or more and having all of the following characteristics:54 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
1. Swing or journal diameter greater than 75 mm;
2. Mass capability of from 0.9 to 23 kg; and
3. Capable of balancing speed of revolution greater than 5000 rpm;
b. Centrifugal balancing machines designed for balancing hollow cylindrical rotor
components and having all of the following characteristics:
1. Journal diameter greater than 75 mm;
2. Mass capability of from 0.9 to 23 kg;
3. A minimum achievable residual specific unbalance equal to or less than 10 g-
mm/kg per plane; and
4. Belt drive type.
4A022 Filament winding machines and related equipment, as follows:
a. Filament winding machines as specified in 5A206; and having all of the
following characteristics:
1. Having motions for positioning, wrapping, and winding fibers
coordinated and programmed in two or more axes;
2. Specially designed to fabricate composite structures or laminates
from “fibrous or filamentary materials”; and
3. Capable of winding cylindrical tubes with an internal diameter between
75 and 650 mm and lengths of 300 mm or greater;
b. Coordinating and programming controls for the filament winding machines
specified in Item 4A022a;
c. Precision mandrels for the filament winding machines specified in Item 4A022a.
4A023 Electromagnetic isotope separators designed for, or equipped with, single or
multiple ion sources capable of providing a total ion beam current of 50 mA or
greater.
Notes:
1. Item 4A023 includes separators capable of enriching stable isotopes as well as
those for uranium. (A separator capable of separating the isotopes of lead with
a one-mass unit difference is inherently capable of enriching the isotopes of
uranium with a three-unit mass difference.)
2. Item 4A023 includes separators with the ion sources and collectors both in the
magnetic field and those configurations in which they are external to the field.
Technical Note: A single 50 mA ion source cannot produce more than 3 g of
separated highly enriched uranium (HEU) per year from natural
abundance feed.
4A024 Mass spectrometers capable of measuring ions of 230 atomic mass units or
greater and having a resolution of better than 2 parts in 230, as follows, and ion
sources therefor:
N.B.: Mass spectrometers specially designed or prepared for analyzing on-line
samples of uranium hexafluoride are controlled under Prescribed
Equipment (0B Category).
a. Inductively coupled plasma mass spectrometers (ICP/MS);¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 55
b. Glow discharge mass spectrometers (GDMS);
c. Thermal ionization mass spectrometers (TIMS);
d. Electron bombardment mass spectrometers having both of the following
features:
1. A molecular beam inlet system that injects a collimated beam of analyte
molecules into a region of the ion source where the molecules are ionized
by an electron beam; and
2. One or more cold traps that can be cooled to a temperature of 193 K (-80
°C) or less in order to trap analyte molecules that are not ionized by the
electron beam;
e. Mass spectrometers equipped with a microfluorination ion source designed for
actinides or actinide fluorides.
Technical Notes:
1. Item 4A024.d. describes mass spectrometers that are typically used
for isotopic analysis of UF gas samples.
6
2. Electron bombardment mass spectrometers in Item 4A024.d. are
also known as electron impact mass spectrometers or electron
ionization mass spectrometers.
3. In Item 4A024.d.2, a ‘cold trap’ is a device that traps gas molecules by
condensing or freezing them on cold surfaces. For the purposes of this entry, a
closed-loop gaseous helium cryogenic vacuum pump is not a cold trap.
4A025 Specialized packings which may be used in separating heavy water from
ordinary water, having both of the following characteristics:
a. Made of phosphor bronze mesh chemically treated to improve wettability; and
b. Designed to be used in vacuum distillation towers.
4A026 Pumps capable of circulating solutions of concentrated or dilute potassium amide
catalyst in liquid ammonia (KNH /NH ), having all of the following
2 3
characteristics:
a. Airtight (i.e., hermetically sealed);
b. A capacity greater than 8.5 m /h; and
3
c. Either of the following characteristics:
1. For concentrated potassium amide solutions (1% or greater), an
operating pressure of 1.5 to 60 MPa; or
2. For dilute potassium amide solutions (less than 1%), an operating
pressure of 20 to 60 MPa.
4A027 Turboexpanders or turboexpander-compressor sets having both of the following
characteristics:
a. Designed for operation with an outlet temperature of 35 K (- 238 ºC) or less; and
b. Designed for a throughput of hydrogen gas of 1000 kg/h or greater.
4A028 Water-hydrogen sulphide exchange tray columns and internal contactors, as
follows:56 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
N.B.: For columns which are specially designed or prepared for the production of
heavy water, see Prescribed Equipment (0B002).
a. Water-hydrogen sulphide exchange tray columns, having all of the following
characteristics:
1. Can operate at pressures of 2 MPa or greater;
2. Constructed of carbon steel having an austenitic ASTM (or equivalent
standard) grain size number of 5 or greater; and
3. With a diameter of 1.8 m or greater;
b. Internal contactors for the water-hydrogen sulphide exchange tray columns
specified in Item 4A028a.
Technical Note: Internal contactors of the columns are segmented trays which have
an effective assembled diameter of 1.8 m or greater; are designed to
facilitate counter current contacting and are constructed of stainless
steels with a carbon content of 0.03% or less. These may be sieve
trays, valve trays, bubble cap trays or turbo grid trays.
4A029 Hydrogen-cryogenic distillation columns having all of the following
characteristics:
a. Designed for operation at internal temperatures of 35 K (-238 ºC) or less;
b. Designed for operation at internal pressures of 0.5 to 5 MPa;
c. Constructed of either:
1. Stainless steel of the 300 series with low sulfur content and with an austenitic
ASTM (or equivalent standard) grain size number of 5 or greater; or
2. Equivalent materials which are both cryogenic and H -compatible; and
2
d. With internal diameters of 30 cm or greater and ‘effective lengths’ of 4 m or
greater.
Technical Note: The term ‘effective length’ means the active height of packing
material in a packed-type column, or the active height of
internal contactor plates in a plate-type column.
4A030 Bellows-sealed scroll-type compressors and bellows-sealed scroll-type vacuum
pumps having all of the following characteristics:
a. Capable of an inlet volume flow rate of 50 m3/h or greater;
b. Capable of a pressure ratio of 2:1 or greater; and
c. Having all surfaces that come in contact with the process gas made from any of the
following materials:
1. Aluminium or aluminium alloy;
2. Aluminium oxide;
3. Stainless steel;
4. Nickel or nickel alloy;
5. Phosphor bronze; or
6. Fluoropolymers.¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 57
Technical Notes: 1. In a scroll compressor or vacuum pump, crescent-shaped
pockets of gas are trapped between one or more pairs of
intermeshed spiral vanes, or scrolls, one of which moves
while the other remains stationary. The moving scroll orbits
the stationary scroll; it does not rotate. As the moving scroll
orbits the stationary scroll, the gas pockets diminish in size
(i.e., they are compressed) as they move toward the outlet
port of the machine.
2. In a bellows-sealed scroll compressor or vacuum pump, the
process gas is totally isolated from the lubricated parts of the
pump and from the external atmosphere by a metal bellows.
One end of the bellows is attached to the moving scroll and
the other end is attached to the stationary housing of the
pump.
3. Fluoropolymers include, but are not limited to, the following
materials:
a. Polytetrafluoroethylene (PTFE),
b. Fluorinated Ethylene Propylene (FEP),
c. Perfluoroalkoxy (PFA),
d. Polychlorotrifluoroethylene (PCTFE); and
e. Vinylidene fluoride-hexafluoropropylene copolymer.
4A031 Industrial equipment including assemblies and components (other than those
specified under Prescribed Equipment in 0B003.e) as follows:
a. High-density (lead glass or other) radiation shielding windows, having all of the
following characteristics, and specially designed frames therefor:
1. A ‘cold area’ greater than 0.09 m2;
2. A density greater than 3 g/cm3; and
3. A thickness of 100 mm or greater.
Technical Note: In Item 4A031.a.1. the term ‘cold area’ means the viewing area
of the window exposed to the lowest level of radiation in the
design application.
b. Radiation-hardened TV cameras, or lenses therefor, specially designed or rated as
radiation hardened to withstand a total radiation dose greater than 5 x 104 Gy
(silicon) without operational degradation.
Technical Note: The term Gy (silicon) refers to the energy in Joules per kilogram
absorbed by an unshielded silicon sample when exposed to ionizing radiation.
c. ‘Robots’, ‘end-effectors’ and control units as follows:
1. ‘Robots’ or ‘end-effectors’ having either of the following characteristics:
(a) Specially designed to comply with national safety standards applicable
to handling high explosives (for example, meeting electrical code ratings
for high explosives); or58 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
(b) Specially designed or rated as radiation hardened to withstand a total
radiation dose greater than 5 x 104 Gy (silicon) without operational
degradation;
2. Control units specially designed for any of the ‘robots’ or ‘end-effectors’
specified in Item 4A031.c.1.
Note: Item 1.A.3. does not control ‘robots’ specially designed for non-nuclear
industrial applications such as automobile paint-spraying booths.
Technical Notes:
1. ‘Robots’
In Item 4A031.c. ‘robot’ means a manipulation mechanism, which may
be of the continuous path or of the point-to-point variety, may use
“sensors”, and has all of the following characteristics:
(a) is multifunctional;
(b) is capable of positioning or orienting material, parts, tools, or
special devices through variable movements in three-dimensional
space;
(c) incorporates three or more closed or open loop servo-devices
which may include stepping motors; and
(d) has “user-accessible programmability” by means of
teach/playback method or by means of an electronic computer
which may be a programmable logic controller, i.e., without
mechanical intervention.
N.B.1:
In the above definition “sensors” means detectors of a physical
phenomenon, the output of which (after conversion into a signal that can be
interpreted by a control unit) is able to generate “programs” or modify
programmed instructions or numerical “program” data. This includes
“sensors” with machine vision, infrared imaging, acoustical imaging, tactile
feel, inertial position measuring, optical or acoustic ranging or force or
torque measuring capabilities.
N.B.2:
In the above definition “user-accessible programmability” means the facility
allowing a user to insert, modify or replace “programs” by means other
than:
(a) a physical change in wiring or interconnections; or
(b) the setting of function controls including entry of parameters.
N.B.3:
The above definition does not include the following devices:
(a) Manipulation mechanisms which are only manually/teleoperator
controllable;
(b) Fixed sequence manipulation mechanisms which are automated
moving devices operating according to mechanically fixed
programmed motions. The “program” is mechanically limited by fixed¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 59
stops, such as pins or cams. The sequence of motions and the selection
of paths or angles are not variable or changeable by mechanical,
electronic, or electrical means;
(c) Mechanically controlled variable sequence manipulation mechanisms
which are automated moving devices operating according to
mechanically fixed programmed motions. The “program” is
mechanically limited by fixed, but adjustable, stops such as pins or
cams. The sequence of motions and the selection of paths or angles are
variable within the fixed “program” pattern. Variations or
modifications of the “program” pattern (e.g., changes of pins or
exchanges of cams) in one or more motion axes are accomplished only
through mechanical operations;
(d) Non-servo-controlled variable sequence manipulation mechanisms
which are automated moving devices, operating according to
mechanically fixed programmed motions. The “program” is variable
but the sequence proceeds only by the binary signal from mechanically
fixed electrical binary devices or adjustable stops;
(e) Stacker cranes defined as Cartesian coordinate manipulator systems
manufactured as an integral part of a vertical array of storage bins
and designed to access the contents of those bins for storage or
retrieval.
2. ‘End-effectors’
In Item 4A031.c. ‘end-effectors’ are grippers, ‘active tooling units’, and any
other tooling that is attached to the baseplate on the end of a ‘robot’
manipulator arm.
N.B.:
In the above definition ‘active tooling units’ is a device for applying motive
power, process energy or sensing to the workpiece.
d. Remote manipulators that can be used to provide remote actions in radiochemical
separation operations or hot cells, having either of the following characteristics:
1. A capability of penetrating 0.6 m or more of hot cell wall (through-the-wall
operation); or
2. A capability of bridging over the top of a hot cell wall with a thickness of 0.6 m
or more (over-the-wall operation).
Technical Note: Remote manipulators provide translation of human operator
actions to a remote operating arm and terminal fixture. They
may be of a master/slave type or operated by joystick or keypad.
4B Equipment, assemblies and components, including test and measurement equipment
usable in development of nuclear explosive devices
4B001 Photomultiplier tubes having both of the following characteristics:
a. Photocathode area of greater than 20 cm2; and
b. Anode pulse rise time of less than 1 ns.
4B002 Flash X-ray generators or pulsed electron accelerators having either of the following
sets of characteristics:60 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
a. 1. An accelerator peak electron energy of 500 keV or greater but less than 25
MeV; and
2. With a figure of merit (K) of 0.25 or greater; or
b. 1. An accelerator peak electron energy of 25 MeV or greater; and
2. A peak power greater than 50 MW.
Note: Item 4B002 does not control accelerators that are component parts of devices
designed for purposes other than electron beam or X-ray radiation (electron
microscopy, for example) nor those designed for medical purposes.
Technical Notes: 1. The figure of merit K is defined as: K=1.7 x 103 V2.65Q. V is the
peak electron energy in million electron volts. If the accelerator
beam pulse duration is less than or equal to 1µs, then Q is the
total accelerated charge in Coulombs. If the accelerator beam
pulse duration is greater than 1 µs, then Q is the maximum
accelerated charge in 1 µs. Q equals the integral of i with
respect to t, over the lesser of 1 µs or the time duration of the
beam pulse ( Q= idt ) where i is beam current in amperes and t
∫
is the time in seconds.
2. Peak power = (peak potential in volts) x (peak beam
current in amperes).
3. In machines based on microwave accelerating cavities, the
time duration of the beam pulse is the lesser of 1 µs or the
duration of the bunched beam packet resulting from one
microwave modulator pulse.
4. In machines based on microwave accelerating cavities, the
peak beam current is the average current in the time duration
of a bunched beam packet.
4B003 High-velocity gun systems (propellant, gas, coil, electromagnetic, and
electrothermal types, and other advanced systems) capable of accelerating
projectiles to 1.5 km/s or greater.
Note: This item does not control guns specially designed for high velocity
weapon systems.
4B004 High-speed cameras and imaging devices and components therefor, as
follows:
N.B.: “Software” specially designed to enhance or release the performance of cameras
or imaging devices to meet the characteristics below is controlled (See Item 4C).
a. Streak cameras, and specially designed components therefor, as follows:
1. Streak cameras with writing speeds greater than 0.5 mm/µs;
2. Electronic streak cameras capable of 50 ns or less time resolution;
3. Streak tubes for cameras specified in 4B004.a.2.;
4. Plug-ins specially designed for use with streak cameras which have modular
structures and that enable the performance specifications in 4B004.a.1 or
4B004.a.2.;
5. Synchronizing electronics units, rotor assemblies consisting of turbines, mirrors
and bearings specially designed for cameras specified in 4B004.a.1.¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 61
b. Framing cameras and specially designed components therefor as follows:
1. Framing cameras with recording rates greater than 225,000 frames per second;
2. Framing cameras capable of 50 ns or less frame exposure time;
3. Framing tubes and solid-state imaging devices having a fast image gating
(shutter) time of 50ns or less specially designed for cameras specified in
4B004.b.1 or 4B004.b.2.;
4. Plug-ins specially designed for use with framing cameras which have modular
structures and that enable the performance specifications in 4B004.b.1 or
4B004.b.2.;
5. Synchronizing electronics units, rotor assemblies consisting of turbines, mirrors
and bearings specially designed for cameras specified in 4B004.b.1 or 4B004.b.2.
c. Solid state or electron tube cameras and specially designed components therefor as
follows:
1. Solid-state cameras or electron tube cameras with a fast image gating (shutter)
time of 50 ns or less;
2. Solid-state imaging devices and image intensifiers tubes having a fast image gating
(shutter) time of 50 ns or less specially designed for cameras specified in
4B004.c.1.;
3. Electro-optical shuttering devices (Kerr or Pockels cells) with a fast image gating
(shutter) time of 50 ns or less;
4. Plug-ins specially designed for use with cameras which have modular structures
and that enable the performance specifications in 4B004.c.1.
Technical Note: High speed single frame cameras can be used alone to produce a
single
image of a dynamic event, or several such cameras can be
combined in a
sequentially-triggered system to produce multiple images of an
event.
4B005 High explosive containment vessels, chambers, containers and other similar
containment devices designed for the testing of high explosives or explosive
devices and having both of the following characteristics:
a. Designed to fully contain an explosion equivalent to 2 kg of TNT or greater; and
b. Having design elements or features enabling real time or delayed transfer of
diagnostic or measurement information.
4B006 Specialized instrumentation for hydrodynamic experiments, as follows:
a. Velocity interferometers for measuring velocities exceeding 1 km/s during time
intervals of less than 10 µs;
b. Shock pressure gauges capable of measuring pressures greater than 10 GPa,
including gauges made with manganin, ytterbium, and polyvinylidene bifluoride
(PVBF, PVF );
2
c. Quartz pressure transducers for pressures greater than 10 GPa.
Note: Item 4B006.a. includes velocity interferometers such as VISARs (Velocity62 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
Interferometer Systems for Any Reflector), DLIs (Doppler Laser
Interferometers) and PDV (Photonic Doppler Velocimeters) also known as
Het-V (Heterodyne Velocimeters).
4B007 High-speed pulse generators, and pulse heads therefor, having both of the
following characteristics:
a. Output voltage greater than 6 V into a resistive load of less than 55 ohms; and
b. ‘Pulse transition time’ less than 500 ps.
Technical Notes:
1. In Item 4B007.b. ‘pulse transition time’ is defined as the time
interval between 10% and 90% voltage amplitude.
2. Pulse heads are impulse forming networks designed to accept a
voltage step function and shape it into a variety of pulse forms
that can include rectangular, triangular, step, impulse,
exponential, or monocycle types. Pulse heads can be an integral
part of the pulse generator, they can be a plug-in module to the
device or they can be an externally connected device.
4B008 Detonators and multipoint initiation systems, as follows:
a. Electrically driven explosive detonators, as follows:
1. Exploding bridge (EB);
2. Exploding bridge wire (EBW);
3. Slapper;
4. Exploding foil initiators (EFI);
b. Arrangements using single or multiple detonators designed to nearly
simultaneously initiate an explosive surface over an area greater than 5000 mm2
from a single firing signal with an initiation timing spread over the surface of less
than 2.5 µs.
Note: Item 4B008. does not control detonators using only primary explosives,
such as lead azide.
Technical Note:
In Item 4B008. the detonators of concern all utilize a small electrical
conductor (bridge, bridge wire, or foil) that explosively vaporizes when a
fast, high-current electrical pulse is passed through it. In nonslapper
types,the exploding conductor starts a chemical detonation in a contacting
high-explosive material such as PETN (pentaerythritoltetranitrate). In
slapper detonators, the explosive vaporization of the electrical conductor
drives a flyer or slapper across a gap, and the impact of the slapper on an
explosive starts a chemical detonation. The slapper in some designs is
driven by magnetic force. The term exploding foil detonator may refer to
either an EB or a slapper-type detonator. Also, the word initiator is
sometimes used in place of the word detonator.
4B009 Firing sets and equivalent high-current pulse generators, as follows:
a. Detonator firing sets (initiation systems, firesets), including electronically-
charged, explosively-driven and optically-driven firing sets designed to drive
multiple controlled detonators specified by Item 4B008 above;¹Hkkx IIµ[k.M 3(ii)º Hkkjr dk jkti=k % vlk/kj.k 63
b. Modular electrical pulse generators (pulsers) having all of the following
characteristics:
1. Designed for portable, mobile, or ruggedized-use;
2. Capable of delivering their energy in less than 15 µs into loads of less than 40
ohms;
3. Having an output greater than 100 A;
4. No dimension greater than 30 cm;
5. Weight less than 30 kg ; and
6. Specified to operate over an extended temperature range of 223 to 373 K (-50
ºC to 100 ºC) or specified as suitable for aerospace applications.
c. Micro-firing units having all of the following characteristics:
1. No dimension greater than 35 mm;
2. Voltage rating of equal to or greater than 1 kV; and
3. Capacitance of equal to or greater than 100 nF.
Note: Optically driven firing sets include both those employing laser initiation
and laser charging. Explosively-driven firing sets include both explosive
ferroelectric and explosive ferromagnetic firing set types. Item 4B009.b.
includes xenon flashlamp drivers.
4B010 Switching devices as follows:
a. Cold-cathode tubes, whether gas filled or not, operating similarly to a spark gap,
having all of the following characteristics:
1. Containing three or more electrodes;
Anode peak voltage rating of 2.5 kV or more;
2. Anode peak current rating of 100 A or more; and
3. Anode delay time of 10 µs or less;
Note: Item 4B010.a. includes gas krytron tubes and vacuum sprytron tubes.
b. Triggered spark-gaps having both of the following characteristics:
1. Anode delay time of 15 µs or less; and
2. Rated for a peak current of 500 A or more;
c. Modules or assemblies with a fast switching function having all of the following
characteristics:
1. Anode peak voltage rating greater than 2 kV;
2. Anode peak current rating of 500 A or more; and
3. Turn-on time of 1 µs or less.
4B011 Pulse discharge capacitors having either of the following sets of characteristics:
a. 1. Voltage rating greater than 1.4 kV;
2. Energy storage greater than 10 J;
3. Capacitance greater than 0.5 µF; and64 THE GAZETTE OF INDIA : EXTRAORDINARY [PART II—SEC. 3(ii)]
4. Series inductance less than 50 nH; or
b. 1. Voltage rating greater than 750 V;
2. Capacitance greater than 0.25 µF; and
3. Series inductance less than 10 nH.
4B012 Neutron generator systems, including tubes, having both of the following
characteristics:
a. Designed for operation without an external vacuum system; and
b. 1. Utilizing electrostatic acceleration to induce a tritium-deuterium nuclear
reaction; or
2. Utilizing electrostatic acceleration to induce a deuterium-deuterium nuclear
reaction and capable of an
Output of 3 x 109 neutrons/s or greater.
4B013 Striplines to provide low inductance path to detonators with the following characteristics:
a. Voltage rating greater than 2 kV; and
b. Inductance of less than 20 nH
4C Technology and Software
Technology and software for the development, production or use of items specified in 4A or
4B. ’
3. Purpose of this notification: Amendments/additions to Categories 0, 3 & 4 of SCOMET list
[Appendix 3 to Schedule 2 of ITC(HS) Classification of Export & Import Items] have been notified.
[F. No. 01/91/171/37/AM10/EC(S)]
ANUP WADHAWAN, Director General of Foreign Trade
Uploaded by Dte. of Printing at Government of India Press, Ring Road, Mayapuri, New Delhi-110064
and Published by the Controller of Publications, Delhi-110054.