**Executive Summary**
This document details a parliamentary question regarding the scientific assessment of groundwater contamination in industrial and river basins of Uttar Pradesh. It outlines studies conducted by CSIR-IITR and CSIR-NEERI, and reports data from the Central Ground Water Board (CGWB) up to 2025. Key findings include localized occurrences of various contaminants exceeding drinking water limits and the progress of groundwater management initiatives.
**Key Points / Main Content**
**Groundwater Quality Assessment Studies**
* **CSIR-IITR Studies:** Conducted three sponsored studies for the Uttar Pradesh Ground Water Department on groundwater quality and mapping across multiple districts.
* Ghaghara Basin (April 2022): Covered Kushinagar, Deoria, Ballia, Maharajganj, Mau, Gorakhpur.
* Central Ganga, Ramganga & Yamuna Basins (July 2021): Covered Fatehpur, Kanpur, Prayagraj, Bareilly, Moradabad, Agra, Aligarh, Ghaziabad, and others.
* Hindon Basin (September 2020): Covered Saharanpur, Shamli, Muzaffarnagar, Meerut, Bhagpat, Ghaziabad, Agra, Firozabad.
* **CSIR-NEERI Study:** Evaluated Effluent Treatment Plants (ETPs) in Meerut, Aligarh, Bulandshahr, Muzaffarnagar, Agra, and Mathura.
* Borewell water samples from industrial areas near Yamuna and Hindon rivers showed heavy metal concentrations within permissible limits (BIS 10500).
**Central Ground Water Board (CGWB) Data and Initiatives**
* **Groundwater Quality Monitoring:** CGWB generates regional groundwater quality data, including for Uttar Pradesh, through its monitoring program and scientific studies as per SOP.
* **Annual Ground Water Quality Report – 2025:**
* Localized occurrence of arsenic, fluoride, iron, salinity, uranium, manganese, lead, and nitrate in excess of drinking water limits has been observed across Uttar Pradesh. District-wise details are provided.
* **Groundwater Resource Estimation (GWRE) 2017-2025 for Uttar Pradesh:**
* Total Annual Ground Water Recharge increased from 69.92 Billion Cubic Meters (2017) to 73.39 Billion Cubic Meters (2025).
* Stage of Ground Water Extraction marginally improved from 70.18% (2017) to 70.00% (2025).
* Safe assessment units increased from 65% (2017) to 67.34% (2025), while Over-exploited units decreased from 11% (2017) to 6.46% (2025).
* **Master Plan for Artificial Recharge to Groundwater- 2020:** Envisages construction of approximately 23,668 artificial recharge and rainwater harvesting structures and 20.57 sq. km for roof-top rainwater harvesting.
* **National Aquifer Mapping (NAQUIM) Project:** Completed for Uttar Pradesh, aquifer maps and management plans shared with state agencies.
* **National Water Policy (2012):** Advocates rainwater harvesting, water conservation, and preservation of water bodies.
* **Uttar Pradesh Ground Water Management and Regulation Act-2019:** In force to regulate groundwater extraction.
* **Groundwater Monitoring Network Automation:** Ministry of Jal Shakti has installed 172 Digital Water Level Recorders (DWLRs) for high-frequency groundwater level data collection.
**Preventive, Treatment, and Management Strategies**
* **Fluoride Contamination:** Source selection, blending, community-based treatment plants, and public awareness.
* **Nitrate Contamination:** Efficient fertilizer management, soil testing, timely fertilizer application, use of organic fertilizers, septic system maintenance, and animal waste management.
* **Arsenic Mitigation:** Household/community treatment units, prohibition of contaminated wells, conjunctive water use, developing alternate aquifers, rainwater harvesting, and deep-well construction.
* **Uranium Contamination:** Adsorption, coagulation, extraction, reverse osmosis, and evaporation.
* **Iron and Manganese:** Aeration, filtration, removal plants, and chemical oxidation.
* **Lead Contamination:** Filtration systems, regulation of industrial effluents, lead testing, hydrogeochemical mapping, and public advisories.
**Impact Analysis**
**State Governments of Uttar Pradesh**
* **Impact:** Responsible for implementing aquifer maps and management plans; receiving groundwater quality data and alerts for remedial measures; and managing groundwater extraction.
* **Action Required:** Implement aquifer management plans; take necessary remedial measures based on groundwater quality data and alerts; regulate groundwater extraction.
**Public / Drinking Water Users in Uttar Pradesh**
* **Impact:** Exposed to potential health risks from localized occurrences of contaminants exceeding drinking water limits.
* **Action Required:** Be aware of public advisories on safe water use practices.
**Industrial Establishments in Uttar Pradesh**
* **Impact:** Subject to regulations regarding industrial effluents, particularly concerning heavy metals and potential pollutants.
* **Action Required:** Ensure industrial effluents meet regulatory standards.
**Various Stakeholders (including research institutions, government agencies, and community members)**
* **Impact:** Can utilize publicly available groundwater quality data for research, planning, and community participation in water management.
* **Action Required:** Utilize available data and participate in community-based initiatives for groundwater management.
Key Entities Referenced
Central Ground Water Board (CGWB): Responsible for generating groundwater quality data, conducting monitoring programs, and releasing the Annual Ground Water Quality Report.
CSIR-Indian Institute of Toxicology Research (CSIR-IITR): Conducted sponsored studies for the Uttar Pradesh Ground Water Department on groundwater quality and mapping.
CSIR-National Environmental Engineering Research Institute (CSIR-NEERI): Evaluated Effluent Treatment Plants (ETPs) in several cities of Uttar Pradesh.
Uttar Pradesh Ground Water Management and Regulation Act-2019: An act in force to regulate groundwater extraction in Uttar Pradesh.
National Water Policy (2012): Advocates for rainwater harvesting, water conservation, and scientific preservation of water bodies.
Ministry of Science & Technology
PARLIAMENT QUESTION: Scientific Assessment
of Groundwater Contamination in Industrial and
River Basins of Uttar Pradesh
Posted On: 11 MAR 2026 5:22PM by PIB Delhi
CSIR-Indian Institute of Toxicology Research, (CSIR-IITR) – a constituent laboratory of Council
of Scientific and Industrial Research (CSIR) has conducted three sponsored studies for the Uttar
Pradesh Ground Water Department across multiple districts of Uttar Pradesh for the analysis of
ground water quality and mapping:
Ghaghara Basin (April 2022): Covered Kushinagar, Deoria, Ballia, Maharajganj, Mau, Gorakhpur.
Central Ganga, Ramganga & Yamuna Basins (July 2021): Covered multiple districts including
Fatehpur, Kanpur, Prayagraj, Bareilly, Moradabad, Agra, Aligarh, Ghaziabad, and others.
Hindon Basin (September 2020): Covered Saharanpur, Shamli, Muzaffarnagar, Meerut, Bhagpat,
Ghaziabad, Agra, Firozabad.
Further, CSIR-National Environmental Engineering Research Institute (CSIR-NEERI), Nagpur
has evaluated Effluent Treatment Plants (ETPs) in several cities of Uttar Pradesh, namely
Meerut, Aligarh, Bulandshahr, Muzaffarnagar, Agra and Mathura, under a project sponsored by
the Central Pollution Control Board. Borewell water samples from industrial areas near the
Yamuna and Hindon rivers showed heavy metal concentrations within permissible limits (BIS
10500).
The Central Ground Water Board (CGWB), Department of Water Resources, River Development,
and Ganga Rejuvenation, Ministry of Jal Shakti generates groundwater quality data at a regional
scale across the country, including state of Uttar Pradesh, through its groundwater quality
monitoring programme and scientific studies conducted as per the approved Standard Operating
Procedure (SOP). As per the Annual Ground Water Quality Report – 2025 recently released by the
CGBW, localized occurrence of arsenic, fluoride, iron, salinity, uranium, manganese, lead and
nitrate in ground water in excess of the limits prescribed for drinking water use has been observed
across Uttar Pradesh. The district-wise details of the same is at Annexure-I. The complete Annual
Ground Water Quality Report – 2025 is available at https://cgwb.gov.in/cgwbpnm/public/uploads/d
ocuments/ 1762854375262680475 file.pdfCentral Ground Water Board carries out Annual Ground Water Resource Estimation (GWRE) to
generate updated estimates of groundwater availability, extraction and stage of groundwater
development, and to analyse trends in recharge and withdrawal.
The assessment of data collected for the State of Uttar Pradesh from 2017 to 2025 indicates that:
Total Annual Ground Water Recharge has increased from 69.92 Billion Cubic Meters (2017) to
73.39 Billion Cubic Meters (2025), i.e., an increase of 3.47 Billion Cubic Meters
The Stage of Ground Water Extraction has marginally improved from 70.18% (2017) to 70.00%
(2025), i.e., a reduction of 0.18 percentage points.
GWRE categorisation indicates that the Safe assessment units (<= 70 %), have increased from 540
(65%) in 2017 to 563 (67.34%) in 2025, while the Over-exploited assessment units (>100 %). have
declined from 91 (11%) in 2017 to 54 (6.46%) in 2025.
CGWB has prepared a Master Plan for Artificial Recharge to Groundwater- 2020 which envisages
construction of about 23,668 artificial recharge and rain-water harvesting structures and 20.57 sq.
km area for roof-top rainwater harvesting in the state of Uttar Pradesh. Also, CGWB has completed
the National Aquifer Mapping (NAQUIM) Project for the entire mappable area of about 2.40 lakh
sq. km in Uttar Pradesh. The Aquifer maps and management plans have been shared with state
agencies for implementation.
Further, the National Water Policy (2012) advocates rainwater harvesting, water conservation, and
the scientific preservation of rivers and water bodies through community participation. It strictly
prohibits encroachment or diversion of water bodies and drainage channels, and where such
encroachments have occurred, it calls for their restoration wherever feasible. Additionally, the Uttar
Pradesh Ground Water Management and Regulation Act-2019 is in force to regulate groundwater
extraction in the state.
Several steps have been taken by the Central Government for facilitating ground water quality
improvement/ remediation of pollutants in the country including Uttar Pradesh alongwith a
combination of preventive, treatment, and management strategies to ensure safe drinking water and
mitigate groundwater contamination by various pollutants. The brief details of the aforesaid are at
Annexure – II.
For real time monitoring and better groundwater management in Uttar Pradesh, the Ministry of Jal
Shakti has initiated strengthening and automation of the groundwater monitoring network. Under
this initiative, 172 Digital Water Level Recorders (DWLRs) have been installed on existing
piezometers under the National Hydrology Project (NHP), providing high-frequency groundwater
level data at 6-hour intervals. The expanded and automated monitoring network will ensure wider
and denser coverage and near real-time data, thereby improving the accuracy of groundwater
resource estimation and supporting special studies such as groundwater recharge which in turn will
aid evidence-based planning and local-level groundwater management in the Uttar Pradesh State.
This information was given by the Minister of State (Independent charge) for the Ministry of
Science and Technology & Earth Sciences Dr. Jitendra Singh in a written reply in the Lok Sabha
today.
*******
NKR/AK/NM
Annexure-IGround Water Quality Status for State of Uttar Pradesh (as per Annual Ground Water Quality
Yearbook-2025
Parameter No. of No. of % of No. of Name of Partially affected
samples Samples Samples partially districts
analyzed Exceeding Exceeding affected
Permissible Permissible districts
Limits Limits
Electrical 1333 31 2.33 11 Agra, Aligarh, Amethi, Etawah,
conductivity Firozabad, G.B. Nagar,
(EC)/Salinity Ghaziabad, Ghazipur, Hathras,
Mainpuri, Mathura
(EC > 3000
µS/cm at
25°C)
Fluoride (F-) 1333 54 4.05 24 Agra, Aligarh, Auraiya,
Azamgarh, Farrukhabad,
(F > 1.5
Fatehpur, Firozabad, G.B.
mg/L)
Nagar, Ghazipur, Jhansi,
Kannauj, Kanpur Dehat, Kanpur
Nagar, Kaushambi, Lucknow,
Mahoba, Mainpuri, Mathura,
Meerut, Pratapgarh, Prayagraj,
Raebareli, Sonbhadra, Unnao
Nitrate 1333 107 8.03 48 Agra, Aligarh, Amethi, Amroha,
(NO 2-) Auraiya, Baghpat, Balrampur,
3
Banda, Bijnor, Budaun,
(Nitrate >
Chitrakoot, Etah, Etawah,
45mg/L)
Fatehpur, Firozabad, G.B.
Nagar, Ghaziabad, Ghazipur,
Gorakhpur, Hamirpur, Hapur,
Hathras, Jalaun, Jaunpur, Jhansi,
Kanpur Dehat, Kanpur Nagar,
Kasganj, Kaushambi, Lalitpur,
Lucknow, Mahoba, Mainpuri,
Mathura, Meerut, Mirzapur,
Moradabad, Muzaffarnagar,
Pilibhit, Prayagraj, Rampur,
Sambhal, Sant Ravidas Nagar,
Shamli, Siddharth Nagar,
Sonbhadra, Unnao, VaranasiParameter No. of No. of % of No. of Name of Partially affected
samples Samples Samples partially districts
analyzed Exceeding Exceeding affected
Permissible Permissible districts
Limits Limits
Arsenic (As) 612 23 3.76 14 Bahraich , Balrampur , Ballia,
Barabanki, Bareilly, Bijnor,
(As > 10 ppb)
Farrukhabad, Fatehpur,
Lakhimpur Kheri, Moradabad,
Pilibhit , Rampur, Sambhal,
Shahjahanpur
Iron (Fe) 601 144 23.96 46 Amethi, Amroha, Auraiya,
Ayodhya, Bahraich, Balrampur,
(Fe > 1.0
Ballia , Barabanki, Bareilly,
mg/L)
Bijnor, Budaun, Chandauli ,
Chitrakoot, Etah , Farrukhabad,
Fatehpur, Gonda, Hamirpur,
Hardoi, Jalaun, Jhansi, Kannauj,
Kanpur Nagar, Kushi Nagar,
Lakhimpur Kheri, Lalitpur,
Mahoba, Mahrajganj, Maunath
Bhanjan, Meerut, Mirzapur,
Moradabad, Muzaffarnagar,
Pilibhit, Pratapgarh, Raebareli,
Rampur, Saharanpur, Sant Kabir
Nagar, Shahjahanpur, Shrawasti,
Siddharth Nagar, Sitapur,
Sonbhadra, Unnao, Varanasi
Uranium 612 29 4.74 22 Agra, Aligarh, Banda, Bijnor,
Budaun, Etah , G.B. Nagar,
(U > 30 ppb)
Ghaziabad, Ghazipur , Jalaun,
Jhansi, Kannauj , Kanpur Dehat
, Lalitpur, Mahoba, Meerut,
Prayagraj, Raebareli,
Shahjahanpur, Sonbhadra,
Unnao, Varanasi
Lead (Pb > 581 2 0.34 2 Budaun, Chandauli
0.01 mg/L)Parameter No. of No. of % of No. of Name of Partially affected
samples Samples Samples partially districts
analyzed Exceeding Exceeding affected
Permissible Permissible districts
Limits Limits
Manganese 610 49 8.03 26 Amroha, Auraiya , Bareilly,
Bijnor, Budaun, Chitrakoot,
(Mn > 0.3
Etah , Fatehpur, Ghaziabad,
mg/L)
Ghazipur , Gorakhpur , Hardoi,
Jhansi, Kushi Nagar ,
Lakhimpur Kheri , Lalitpur,
Mahoba, Mathura, Meerut,
Mirzapur , Moradabad, Pilibhit ,
Pratapgarh, Sonbhadra, Unnao,
VaranasiAnnexure - II
Steps taken by the Central Government for facilitating ground water quality improvement/
remediation of pollutants in the country including Uttar Pradesh
Under the National Aquifer Mapping Programme (NAQUIM) of CGWB, special attention has been
given to the aspect of ground water quality including contamination by toxic substances such as
Arsenic in ground water. CGWB has successfully constructed Arsenic-free wells using cement-sealing
technology under NAQUIM studies in the Gangetic flood plains of Uttar Pradesh. In total, 294
exploratory wells tapping arsenic-safe aquifers have been constructed under NAQUIM in Uttar
Pradesh.
Successful wells have been handed over to the State Governments for their purposeful utilization.
Further, CGWB is providing technical assistance to the States by sharing the cement sealing technology
for tapping contamination free aquifers in Gangetic flood plains.
Central Ground Water Board (CGWB) conducts periodic groundwater quality monitoring to identify
both contaminated and non-contaminated areas including UP. To enhance monitoring efficiency, a new
Standard Operating Procedure (SoP) for Groundwater Quality Monitoring has been introduced,
incorporating more frequent and denser sampling in vulnerable areas.
Data on ground water quality that is available with CGWB are made available in public domain
through reports as well as through the web site (http://www.cgwb.gov.in) for use by various
stakeholders. The data is also shared with State Governments for taking necessary remedial measures.
To further accelerate the dissemination of knowledge on ground water quality, CGWB has initiated the
practice of issuing ground water quality year book, half-yearly ground water quality Bulletins so that
immediate action can be initiated in the reported areas.
Fortnightly results of chemical analysis data are shared with State Government as Ground Water
Quality Alerts since 17 June 2024.
Since improvement in ground water quality can also be achieved to some degree by taking up artificial
recharge activities, Ministry of Jal Shakti and other central ministries are implementing several
programmes towards this end, which are expected to improve the underground water table and also
help in ameliorating the quality of ground water through dilution effect.
Preventive, treatment, and management strategies to ensure safe drinking water and mitigate
groundwater contamination by various pollutants is as under:
In fluoride-affected regions, water quality can be safeguarded through proper source selection,
blending of high- and low-fluoride waters, installation of community based treatment plants and public
awareness initiatives.
For nitrate contamination, emphasis is placed on efficient fertilizer management, including regular
soil testing, appropriate timing of fertilizer application and use of organic fertilizers. Additional
measures include maintenance of septic systems and proper management of animal wastes to prevent
nitrogen leaching into groundwater.
Arsenic mitigation involves both short- and long-term measures. Short-term strategies include the
installation of household and community treatment units, prohibition of contaminated wells, and
conjunctive use of surface and groundwater. Long-term actions focus on developing alternate safe
aquifers, rainwater harvesting and deep-well construction using sealing techniques.
In the case of uranium contamination, multiple treatment technologies are available, including
adsorption, coagulation, extraction, reverse osmosis and evaporation. Selection of the appropriate
method depends on cost, efficiency and local conditions, with combined or need-based approaches
recommended for best results.
For iron and manganese, remedial options include aeration, filtration, use of iron or manganese
removal plants and chemical oxidation. Reverse osmosis and specialized media filters are suitable forsmaller-scale or household applications.
To address lead contamination, the key measures include installation of filtration systems (activated
carbon, RO, or ion exchange), strict regulation of industrial effluents, lead testing in public buildings,
hydrogeochemical mapping and public advisories on safe water use practices. Overall, the integrated
implementation of source protection, treatment technologies, regulatory enforcement, and community
participation is crucial to ensuring safe and sustainable groundwater quality across affected regions.
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