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GOVERNMENT OF INDIA
DEPARTMENT OF ATOMIC ENERGY
LOK SABHA
UNSTARRED QUESTION NO - 528
ANSWERED ON 22.07.2026
NUCLEAR ENERGY MISSION FOR VIKSIT BHARAT
528. SHRI JASHUBHAI BHILUBHAI RATHVA
SHRI PRADEEP PUROHIT
SHRI RAHUL SINGH LODHI
SHRI KOTA SRINIVASA POOJARY
SHRI JAI PRAKASH
SMT. APARAJITA SARANGI
SHRI ANURAG SHARMA
SHRI KHAGEN MURMU
DR. HEMANT VISHNU SAVARA
DR. NISHIKANT DUBEY
DR. SANJAY JAISWAL
Will the PRIME MINISTER be pleased to state:-
(a) the details of progress made under the Nuclear Energy Mission for Viksit Bharat including
the roadmap for achieving 100 GW of nuclear power capacity by 2047;
(b) the current status of development and deployment of Small Modular Reactors (SMRs) in the
country;
(c) the details of the measures taken by the Government to facilitate participation of the private
sector in nuclear power generation while ensuring safety and regulatory oversight; and
(d) the details of safeguards put in place or enhanced for nuclear safety, waste management and
security under the revised policy framework including for existing Nuclear plants like
Tarapur Atomic Power Station in Palghar district?
ANSWER
THE MINISTER OF STATE FOR PERSONNEL, PUBLIC GRIEVANCES AND PENSIONS
AND PRIME MINISTER’S OFFICE (DR. JITENDRA SINGH)
(a) The Nuclear Energy Mission (NEM) announced in the Union Budget 2025–26 with the
objective of achieving 100 GWe nuclear power generation capacity by 2047 to support the
vision of Viksit Bharat and the goal of net zero carbon emissions by 2070. Further, the
mission also aims to develop and operationalise at least five indigenous Small Modular
Reactors (SMRs) by 2033.In this regard, BARC has undertaken design and development of SMRs namely;
• 220 MWe Bharat Small Modular Reactor (BSMR-200);
• 55 MWe Small Modular Reactor (SMR-55); and
• Up to 5 MWth High Temperature Gas Cooled Reactor (HTGCR) for hydrogen
production.
Parliament has enacted the SHANTI Act, 2025, focussed on the Nuclear Energy Mission of
the Government of India, to achieve a target of 100 GW by 2047. This Act opens the nuclear
energy sector to the private participation.
Government has drawn up a roadmap for reaching the 100 GW nuclear power capacity by
2047 as announced in the Nuclear Energy Mission. As per the roadmap, the present nuclear
power capacity of 8.78 GW is expected to reach about 22 GW by 2031-32 on progressive
completion of projects presently at various stages of implementation. Another 32 GW of
nuclear power capacity is envisaged to be set up beyond 2032 by NPCIL, comprising of
indigenous Pressurised Heavy Water Reactors (PHWR) and Light Water Reactors (LWR)
by 2047 taking the capacity to about 54 GW. As per the roadmap, the balance of 46 GW is
expected to be set up by other Public Sector Enterprises (Central & State), State
Governments, Private sector and Joint Ventures in different business models, comprising of
reactors of different technologies.
(b) (A) The BSMR-200 is an indigenous Pressurized Water Reactor (PWR) based power reactor.
The current status of the BSMR-200 is mentioned below;
a) In-principle approval for engineering and construction of BSMR-200 has been received.
b) Proposal for Administrative & Financial sanction is cleared by Atomic Energy
Commission (AEC) and the approval of Empowered Technology Group (ETG) has been
obtained.
c) Atomic Energy Commission has approved Tarapur, Maharashtra as site for BSMR-200.
(B) The SMR-55 is based on Pressurised Water Reactor design. The current status of the SMR-
55 is mentioned below;
a) In-principle approval for engineering and construction of SMR-55 has been received.
b) Atomic Energy Commission has approved Tarapur, Maharashtra as site for SMR-55
(C) Up to 5 MWth HTGCR is being designed and developed by BARC as nuclear heat source
for suitable thermochemical cycle, such as copper-chlorine cycle, for hydrogen production.
The current status of the HTGCR is mentioned below;a) In-principle approval for engineering and construction of HTGCR has been received.
b) The proposed site for the reactor is BARC, Vizag. Siting consent has been received.
c) Terms of Reference (ToR) for obtaining environmental clearances has been received
from the Ministry of Environment, Forest and Climate Change (MoEF&CC).
(c) The SHANTI Act-2025 envisages participation of private entities in the field of nuclear
energy including R&D in the field to promote indigenous nuclear technology. Also, BARC
is engaging Indian industries through knowledge sharing and handholding for new
technology developments for the SMRs, thus developing nuclear vendors for self-reliance in
the field of nuclear technology encouraging R&D ecosystem in private sector.
To facilitate participation of private sector in nuclear power generation, the SHANTI Act
establishes the regulatory body (Atomic Energy Regulatory Board) so as to give it a statutory
status and to carry out its functions independently. Under the SHANTI Act, the regulatory
body will be able to draft their own regulations and regulatory documents, carry out
regulatory oversight, take enforcement action, and make recommendations to Central
Government. In addition, the SHANTI Act will provide enhanced legislative and regulatory
framework for continued excellence in nuclear safety keeping pace with large scale
expansion of nuclear power program.
(d) India has a robust system of implementation of Nuclear Safety and Security for all existing
in Nuclear Power Plants including Tarapur Atomic Power Station in Palghar District.
Highest priority is accorded to safety and security in all aspects of nuclear power viz. siting,
design, construction, commissioning, and operation. Nuclear power plants are designed
adopting safety principles of redundancy, diversity and provided with fail-safe design
features following an overlapping defence-in-depth approach. This ensures that there are
multiple barriers between the source of radioactivity and the environment. Nuclear power
plants are constructed to highest quality standards and the operations are performed adopting
well laid out procedures by highly qualified, trained and licensed personnel. There is also a
robust internal and independent regulatory mechanism in place and periodic safety reviews
are carried out both by Nuclear Power Corporation of India Ltd. (NPCIL) and the Atomic
Energy Regulatory Board (AERB) to ensure safety of the plant.
The nuclear waste handling, treatment, storage and disposal are carried out as per the well
laid down procedures and guidelines stipulated by the AERB in accordance with the Atomic
Energy (Safe Disposal of Radioactive Wastes) Rules, 1987 and the requirements of AERBSafety Code on 'Management of Radioactive Waste (AERB/SC/RW)'. The adherence to
these is verified through periodic inspection conducted by AERB. The handling and disposal
area is kept under surveillance by the facility management. The environmental monitoring is
carried out by Environmental Survey Laboratories (ESLs) of BARC.
Comprehensive safeguards and well-established procedures are implemented to ensure the
safe storage, handling, and disposal of nuclear waste. Waste management practices are
governed by stringent regulatory standards and are designed to protect operating personnel,
the public, and the environment. Radioactive waste is segregated based on its activity level,
treated using appropriate techniques such as chemical decontamination, absorption, ion
exchange/membrane separations and volume reduction, and then conditioned into stable
forms suitable for storage. Engineered storage systems with multiple containment barriers,
radiation shielding, and leak detection mechanisms are employed to prevent any release of
radioactivity. Waste handling operations are conducted using remote or shielded systems,
wherever necessary, and under strict radiological surveillance. Regular monitoring, periodic
safety reviews, and adherence to approved waste disposal protocols ensure continued safety
throughout the lifecycle of waste management.
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