Home » Equilibrion SHyNEs light on nuclear-enabled hydrogen

Equilibrion SHyNEs light on nuclear-enabled hydrogen

by Mark Cantrell
Iberdrola & H2 Green Steel team up for green hydrogen megaproject

Technical and strategic nuclear consultancy, Equilibrion has been appointed to deliver research on how nuclear-enabled hydrogen could contribute to the UK’s net zero carbon energy challenge.

The firm was appointed by Northern Gas Networks (NGN), and Wales & West Utilities (WWU), with the support of the Energy Innovation Centre (EIC).

Equilibrion’s expertise covers the full nuclear-to-energy end-user value chain, and it intends to use this to explore how deployment of nuclear-enabled hydrogen production could support the repurposing of the UK’s existing extensive gas network for low-carbon hydrogen.

The SHyNE project aims to develop a deployment roadmap for capacity introduction to meet user demand, looking at estimated production rates, a geographical analysis that considers potential nuclear new-build sites in the context of existing infrastructure, customer demand centres, and a techno-economic analysis.

Hydrogen is currently being considered as a greener alternative to natural gas for industrial, domestic and transport customers. Nuclear-enabled hydrogen is recognised by the UK’s Low-Carbon Hydrogen Standard and uses the heat and electricity from nuclear reactors to generate hydrogen.

Allan Simpson, chief technologist at Equilibrion, said: “Nuclear-enabled hydrogen represents a powerful, yet largely untapped, opportunity to drive the UK’s journey to Net Zero at a significant scale and for the first time both the nuclear and hydrogen sectors can fully appreciate how working together can be a game-changer to the availability of low-cost electrolytic hydrogen and expand opportunities for organisations in both sectors.

“We are committed to enhancing the opportunities for collaboration between the hydrogen and nuclear sectors for mutual benefit and are delighted to be appointed by Northern Gas Networks and Wales & West Utilities to advance the role of nuclear energy in delivering scalable, low-carbon hydrogen through the existing gas infrastructure. This project supports the foundation for a sustainable energy transition, bringing clean energy and substantial socio-economic benefits to communities across the UK.”

Advancements in nuclear technology, particularly with Small Modular Reactors (SMRs) and Advanced Modular Reactors (AMRs) are said to offer flexibility and scalable deployment options that support a robust and resilient clean energy strategy.

SHyNE will build on these developments by assessing how improved siting flexibility and financing methods for reactors can accelerate nuclear deployment to support an energy transition and reduce costs for consumers.

The project will also assess how a nuclear power station, twinned with electrolytic hydrogen production, can provide flexible electricity output to help balance the grid. The SHyNE project will lead the way in demonstrating the potential opportunities for nuclear energy to help meet the UK’s 2050 net zero commitments.

Matthew Hindle, WWU’s head of net zero and sustainability said: “We know that low carbon hydrogen needs to play an important role in supporting the UK’s energy transition – including blending into existing natural gas supplies, or in its pure form for industry, transport, electricity generation and homes. To reliably produce sufficient hydrogen to meet these demands, it will be vital to diversify production methods and increase the levels of firm capacity needed for predictable supply.

“We’re excited to work with Equilibrion and NGN to better understand how nuclear-enabled hydrogen can support gas customers through the energy transition, by providing reliable, scalable low-carbon hydrogen for supply into the UK gas networks. SHyNE can support the reuse and adaptation of existing infrastructure to reduce costs, while accelerating the energy transition and enhancing energy security.”

Lewis Kirkwood, NGN’s innovation manager, added: “Hydrogen can be a key enabler of accelerated decarbonisation for industry, transport and heat, and as an energy network it’s critical we understand all the angles for hydrogen production and what’s required to ready our infrastructure.”

Image credit: petrmalinak/Shutterstock


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