UPSC CSE 2026 Essay Paper Discussion

India’s Fairwood Nuclear & South Korea’s SK Securities sign Small Reactor Project pact

Why in News?

India’s Fairwood Nuclear Pvt. Ltd. and South Korea’s SK Securities Co. Ltd. have signed a strategic collaboration agreement to support the development, financing, and commercialisation of Small Modular Reactors (SMRs) and Micro Modular Reactors (MMRs) in India. 

UPSC Relevance: GS-3 Science and Technology: Nuclear Technology

Prelims & Mains: Small Modular Reactors (SMRs), Micro Modular Reactors, Nuclear Energy, India’s Nuclear Energy Programme

What are Small Modular Reactors (SMRs)?

  • Small Modular Reactors are advanced nuclear reactors with an electrical output generally ranging from less than 30 MW to about 300 MW per unit, significantly smaller than conventional nuclear reactors, which often exceed 700-1000 MW.

Key Features: 

  • Small: Generate a fraction of the power produced by conventional nuclear reactors.
  • Modular: Major components can be manufactured in factories and transported to installation sites.
  • Scalable: Multiple modules can be added according to energy requirements.
  • Enhanced Safety: Incorporate passive safety systems that rely on natural processes such as gravity, convection, and pressure differences rather than active human intervention.
  • Flexible Deployment: Suitable for remote areas, industrial clusters, mines, islands, and defence installations.

What are Micro Modular Reactors (MMRs)?

  • Micro Modular Reactors are even smaller nuclear reactors, generally producing up to 10-20 MW of electricity, though definitions vary.
  • Applications: 
    • Remote military bases
    • Arctic and island communities
    • Data centres
    • Mining operations
    • Hydrogen production facilities

Their compact design enables transport by road, rail, or ship and allows operation in areas where conventional power infrastructure is weak.

Key Features of the Fairwood Nuclear-SK Securities Agreement: 

  • Project Development: The partnership will collaborate on the technical and commercial development of SMR and MMR projects in India.
  • Investor Mobilisation: SK Securities will leverage its network in South Korea and international financial markets to attract institutional and private investors.
  • Technology Ecosystem Access: The agreement facilitates engagement with global nuclear technology stakeholders and advanced reactor ecosystems.
  • Make in India Focus: Fairwood Nuclear aims to develop a privately financed indigenous reactor platform aligned with the “Make in India” initiative.
  • Duration: The initial agreement is valid for three years, extendable by mutual consent.

Why are SMRs gaining Global Importance?

The global energy transition is increasing demand for reliable, low-carbon electricity that complements renewable energy sources.

  • Climate Change Mitigation: SMRs generate electricity with minimal greenhouse gas emissions and can support net-zero commitments.
  • Energy Security: They provide dependable baseload power independent of weather conditions.
  • Electrification of Emerging Sectors: SMRs can support:
    • Artificial Intelligence data centres
    • Green hydrogen production
    • Industrial decarbonisation
    • Electric mobility infrastructure
    • Replacement of Coal Plants

Many countries are exploring SMRs as substitutes for ageing coal-fired power stations by utilising existing grid infrastructure.

Significance for India: 

  • Supporting India’s Net-Zero Goal: India aims to achieve Net Zero emissions by 2070. Expanding nuclear power is essential for decarbonising the electricity sector.
  • Meeting Rising Power Demand: India’s electricity demand is projected to grow substantially due to industrialisation, urbanisation, AI infrastructure, and electric mobility.
  • Energy Transition: SMRs can provide continuous power while complementing intermittent renewable energy sources such as solar and wind.
  • Decentralised Energy Generation: SMRs can be deployed in Remote regions, Border areas, Industrial corridors, & Island territories. 
  • Strengthening Domestic Manufacturing: The collaboration could help build indigenous capabilities in Reactor manufacturing, Nuclear supply chains, Advanced materials and Nuclear engineering services

India’s Push Towards Small Modular Reactors:

India has recently increased emphasis on SMR development.

  • Policy Support: The Union Government is accelerating India’s transition to a 100 GW nuclear capacity by 2047 through the newly enacted SHANTI Act, 2025. This legislation ends the state monopoly on nuclear operations, enabling private sector and foreign participation, and is backed by a ₹20,000 crore budgetary push for Small Modular Reactors (SMRs). 
  • Bharat Small Reactor (BSR): India is developing the Bharat Small Reactor (BSR) concept based on indigenous Pressurised Heavy Water Reactor (PHWR) technology to support industrial decarbonisation and captive power generation.

Advantages of SMRs: 

  • Lower Initial Capital Requirement: SMRs require lower upfront investment compared to large nuclear power plants.
  • Faster Construction: Factory fabrication reduces on-site construction time and project delays.
  • Enhanced Safety: Passive safety systems reduce the probability of severe accidents.
  • Grid Flexibility: They can be integrated into smaller grids and can operate alongside renewable energy sources.
  • Reduced Land Requirement: SMRs typically occupy less land than large conventional nuclear power stations.
  • Long Refuelling Cycles: Many designs can operate for several years before refuelling, reducing operational interruptions.

Challenges Associated with SMRs:

  • High Cost per Unit of Electricity: Despite lower upfront costs, SMRs may face higher electricity generation costs because economies of scale are limited.
  • Nuclear Waste Management: SMRs continue to generate radioactive waste requiring safe long-term storage and disposal.
  • Technology Maturity: Many SMR designs globally remain at demonstration or early commercialisation stages.
  • Financing Risks: Investors may remain cautious until large-scale commercial deployment demonstrates economic viability.
  • Regulatory Framework: India’s nuclear regulatory system is primarily designed for large reactors and may require adaptation for advanced reactor technologies.

Way Forward:

  • Accelerate development of indigenous SMR technologies.
  • Create a dedicated regulatory framework for advanced reactors.
  • Encourage public-private partnerships in nuclear energy.
  • Develop robust spent-fuel and waste-management systems.
  • Promote international cooperation for financing and technology transfer.
  • Integrate SMRs into India’s broader clean-energy and industrial decarbonisation strategy.

The Fairwood Nuclear–SK Securities partnership reflects growing international confidence in India’s emerging advanced nuclear energy sector.  

Tell Google you want more of this.

Add Anantam IAS as a preferred source

One tap, and this site shows up more often in your own Top Stories, AI Overviews and AI Mode. Remove it any time.

Share this

PDF

Written by

Pooja Bhatt Ma'am

Editor — UPSC Content · Anantam IAS

Pooja Bhatt is part of the editorial team at Anantam IAS, writing and editing UPSC prep content across Prelims, Mains and current affairs.

Specialises in · UPSC syllabus content, editing and publishing Experience · 6+ years

Want tomorrow's brief in your inbox before coffee?

We edit — we don't scrape. Every morning, one lean briefing written for UPSC Prelims + Mains relevance.