Read or download the official PDF of this gazette notification issued by the Department of Atomic Energy on 12th August 2026. Classified under Press Release.
Executive Summary
Dr. Jitendra Singh presented the government's roadmap in the Lok Sabha to achieve 100 GWe of nuclear energy capacity by 2047 through the Nuclear Energy Mission. Key initiatives include the deployment of at least five indigenous Small Modular Reactors (SMRs) by 2033 and the enactment of the SHANTI Act, 2025, to facilitate private sector participation. The strategy emphasizes a three-stage nuclear power programme to utilize thorium reserves and strengthen domestic manufacturing and supply chains.
Key Points / Main Content
Strategic Targets and Frameworks
Capacity Expansion: Aiming to reach 100 GWe nuclear energy capacity by 2047, supported by the Nuclear Energy Mission announced in the Union Budget 2025-26.
Three-Stage Programme: Guided by a closed fuel cycle approach utilizing natural uranium in PHWRs, followed by Fast Breeder Reactors, and finally large-scale thorium utilization.
Legislative Reform: The Sustainable Harnessing and Advancement of Nuclear Energy for Transforming India (SHANTI) Act, 2025, has been enacted to enable public and private sector participation.
Reactor Technology and Development
Small Modular Reactors (SMRs): Target to develop and operationalize at least five indigenous SMRs by 2033, including the BSMR-200 (220 MWe) and SMR-55 (55 MWe).
SMR Deployment: Focus on brownfield locations, including retiring fossil-fuel plants, captive industrial plants, and remote off-grid areas.
Advanced Designs: Development of High Temperature Gas Cooled Reactors (HTGCR) for hydrogen production and Sodium Cooled Fast Breeder Reactors.
Indigenous Manufacturing: Realization of critical components like low-alloy steel forgings and reactivity control drive mechanisms through domestic industry and start-ups.
Research and Infrastructure
Thorium Utilization: Reprocessing irradiated Thoria pins to obtain uranium-233, currently used as fuel for the KAMINI reactor.
Nuclear Medicine: Expansion of infrastructure through the Isotope Production Reactor (IPR) to increase domestic production of medical isotopes.
Regulatory Oversight: The SHANTI Act provides statutory status to the Atomic Energy Regulatory Board (AERB) to reinforce safety and security standards.
Impact Analysis
Private Sector and Indian IndustryImpact
The SHANTI Act and Nuclear Energy Mission open opportunities for private entities in manufacturing, engineering services, R&D, and supply chains.
Action Required
Industry players and start-ups must engage in R&D and collaborate with the Department of Atomic Energy (DAE) for knowledge-sharing and technology handholding.
Research Institutions (BARC and IGCAR)Impact
These units are tasked with the design, development, and operationalization of next-generation technologies like SMRs, HTGCRs, and Fast Breeder Reactors.
Action Required
Continue advancing multidisciplinary scientific research and engineering development for indigenous reactor designs and closed fuel-cycle facilities.
Atomic Energy Regulatory Board (AERB)Impact
The board receives statutory status, strengthening its legal framework for providing regulatory oversight.
Action Required
Implement and maintain more stringent standards for nuclear safety, security, and safeguards across expanding public and private facilities.
Department of Atomic Energy (DAE)Impact
Responsible for overseeing the two-pronged approach of deploying large indigenous reactors and SMRs while building a globally competitive ecosystem.
Action Required
Identify and prepare greenfield and brownfield sites for reactor deployment and facilitate the expansion of indigenous nuclear medicine infrastructure.
Key Entities Referenced
Sustainable Harnessing and Advancement of Nuclear Energy for Transforming India (SHANTI) Act, 2025: A legislative act enacted to enable private sector participation in the nuclear industry and provide statutory status to the regulatory framework.
Nuclear Energy Mission: A government initiative announced in the Union Budget 2025-26 aimed at expanding India's nuclear capacity to 100 GWe by 2047.
Three-Stage Nuclear Power Programme: India's long-term nuclear strategy focused on energy security and the sustainable utilization of domestic thorium reserves.
Atomic Energy Regulatory Board (AERB): The nuclear regulatory body granted statutory status under the SHANTI Act to reinforce safety and oversight frameworks.
Small Modular Reactors (SMRs): Indigenous next-generation reactor technologies targeted for deployment by 2033 to accelerate nuclear capacity addition.
Department of Atomic Energy
Dr. Jitendra Singh Presents Government’s
Roadmap for a Self-Reliant and Globally
Competitive Nuclear Energy Ecosystem in Lok
Sabha
India Accelerates Indigenous Nuclear Energy Push with
Focus on SMRs, Thorium and Private Sector Participation: Dr
Jitendra Singh
Dr. Jitendra Singh Highlights 100 GWe Nuclear Energy Target
by 2047, Indigenous SMRs and Three-Stage Nuclear
Programme
Government Strengthens Nuclear Self-Reliance through
SHANTI Act, Domestic Manufacturing and Advanced Reactor
Technologies
At Least Five Indigenous Small Modular Reactors Targeted
by 2033 as India Expands Next-Generation Nuclear
Capabilities
प्रव तथ: 12 AUG 2026 3:20PM by PIB Delhi
India is steadily strengthening its indigenous nuclear energy ecosystem with a focus on advanced reactor
technologies, Small Modular Reactors (SMRs), domestic manufacturing capabilities, private-sector
participation and long-term utilisation of the country’s abundant thorium resources, Minister of State for
Personnel, Public Grievances & Pensions and Prime Minister’s Office, Dr. Jitendra Singh, said in a written
reply in the Lok Sabha today.
Dr. Jitendra Singh said India’s long-term nuclear energy strategy continues to be guided by the country’s
three-stage nuclear power programme, aimed at sustainable utilisation of its vast thorium reserves for
long-term energy security. The strategy has received further impetus through the Nuclear Energy Mission
announced in the Union Budget 2025-26, with an objective of expanding nuclear energy capacity to 100
GWe by 2047.
The Government has adopted a two-pronged approach to accelerate nuclear capacity addition. This
includes deployment of large indigenous reactors such as 700 MWe Pressurised Heavy Water Reactors
(PHWRs) and advanced reactor designs at greenfield sites, alongside development and deployment ofSmall Modular Reactors (SMRs) at brownfield locations, including retiring fossil-fuel-based power plants,
captive plants for energy-intensive industries and off-grid applications in remote areas.
A key objective under the Nuclear Energy Mission is to develop and operationalise at least five indigenous
SMRs by 2033. The Bhabha Atomic Research Centre (BARC), a constituent unit of the Department of
Atomic Energy (DAE), is undertaking the design and development of indigenous SMR technologies,
including the 220 MWe Bharat Small Modular Reactor (BSMR-200) and 55 MWe SMR-55 for power
generation. BARC is also developing a High Temperature Gas Cooled Reactor (HTGCR) of up to 5 MWth
capacity, which can be coupled with a suitable thermochemical cycle for hydrogen production.
Dr. Jitendra Singh also highlighted the continuing work of the Indira Gandhi Centre for Atomic Research
(IGCAR) in advancing the second stage of India’s nuclear power programme. IGCAR is pursuing
multidisciplinary scientific research and advanced engineering development for Sodium Cooled Fast
Breeder Reactors and associated closed fuel-cycle facilities, technologies that remain a cornerstone of
India’s long-term nuclear strategy.
Emphasising the Government’s efforts to create a broader domestic nuclear ecosystem, Dr. Jitendra Singh
said the Sustainable Harnessing and Advancement of Nuclear Energy for Transforming India (SHANTI)
Act, 2025 has been enacted to enable wider participation of both public and private entities in the nuclear
sector.
The Department of Atomic Energy is encouraging Indian industry through knowledge-sharing and
handholding for new SMR technologies, while simultaneously developing domestic nuclear vendors and
strengthening the private-sector R&D ecosystem. Critical components such as low-alloy steel forgings for
reactor pressure vessels and reactivity control drive mechanisms have already been realised through
domestic industry, while development of other critical equipment has also been initiated with domestic
industry and start-ups.
The reforms under the SHANTI Act envisage greater participation of private entities in nuclear
manufacturing, engineering services, research and development and supply chains, while maintaining
stringent standards of nuclear safety, security and safeguards. The Act also provides statutory status to the
Atomic Energy Regulatory Board, thereby reinforcing the framework for robust regulatory oversight.
On thorium, Dr. Jitendra Singh said India is pursuing its Three-Stage Nuclear Power Programme, based on
a closed fuel cycle, to optimise utilisation of its uranium resources and progressively harness its abundant
thorium reserves. Thorium, being a fertile material, needs to be converted into fissile uranium-233 in a
nuclear reactor before it can be used for energy generation.
Under the first stage, natural uranium is used as fuel in PHWRs, followed by reprocessing of spent fuel to
extract plutonium. In the second stage, Fast Breeder Reactors utilise plutonium to generate additional
fissile material. The third stage envisages large-scale utilisation of thorium through uranium-233 bred
from thorium, after adequate capacity of Fast Breeder Reactors has been established.
India has already undertaken sustained R&D towards thorium utilisation. Thorium Oxide (Thoria) pellets
have been used in the initial cores of operating PHWRs, while Thoria-based fuels have also been
irradiated in BARC research reactors. The irradiated Thoria pins have been reprocessed to obtain uranium-
233, which has subsequently been fabricated as fuel for the KAMINI reactor at IGCAR, Kalpakkam.
Dr. Jitendra Singh said the Government is undertaking a range of measures to build a globally
competitive, self-reliant and technologically advanced nuclear energy ecosystem. These include
implementation of the Nuclear Energy Mission, development of indigenous SMRs, strengthening of
domestic nuclear manufacturing and supply chains, continued capacity building in reactor design,manufacturing, construction and the nuclear fuel cycle, as well as expansion of indigenous nuclear
medicine infrastructure through the Isotope Production Reactor (IPR) to augment domestic production of
medical isotopes.
The Government’s approach, therefore, combines indigenous technology development, expansion of
nuclear capacity, greater industry participation, advanced reactor research and sustained investment in the
nuclear fuel cycle, with the larger objective of strengthening India’s energy security and technological
self-reliance.*****
NKR/AK
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