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Equinor joins Europe’s biggest green hydrogen project, the NortH2-project

Equinor joins Europe’s biggest green hydrogen project, the NortH2-project

Oslo, December 7 - Neftegaz.RU.The project aims to produce green hydrogen using renewable electricity from offshore wind off the coast of Netherlands of about 4 gigawatts by 2030, and 10+ gigawatts by 2040, kickstarting the hydrogen economy in Northwest Europe.

“This is a groundbreaking project that Equinor is looking forward to contribute to. The project can be an important part in our efforts to build a competitive position in hydrogen, creating future value and industrial possibilities. Our aim is to be a net-zero energy company by 2050 and developing a profitable low carbon value chain for hydrogen will be an essential part of our transition to become a broad energy company”б says Equinor CEO, Anders Opedal.

NortH2 was launched in February 2020, with Shell, Groningen Seaports Gasunie and the province of Groningen. Equinor joins RWE as new partners to the project. The project will complete a feasibility study by 2021, with the aim to start project development activities in the 2nd half of 2021.

The project will have a capacity of 1 GW in 2027, 4 GW by 2030 and 10+ GW by 2040 for electrolysis. This equates to 0.4. million tonnes of green hydrogen production in 2030 and 1 million tonnes green hydrogen production by 2040. This can abate 8 to 10 million tonnes of CO2 emissions. This is equivalent to the yearly emissions from road traffic in Norway. The rapid growth in offshore wind is well suited to developing a green hydrogen value chain.

The North Sea has a great potential for large-scale wind development, there is extensive existing natural gas infrastructure that is suitable for storage and large-scale transport of hydrogen, and there are large industrial clusters in the Netherlands and Germany as well as heavy-duty vehicle OEMs that could economically benefit from a ‘first mover’ advantage.

NortH2 sets a vision for 4 GW integrated offshore-wind-to-green-hydrogen value chain by 2030, and for 10+ GW by 2040. Through the parallel development of the required hydrogen infrastructure by repurposing existing natural gas infrastructure, the project could supply major Northwest European clusters.

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