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Shell, Uniper ink pact for blue H2 production facility in the UK

hydrogen hub at Killingholme site, with up to 720 MW blue hydrogen production and up to 100 MW green hydrogen production (Source: Uniper)

Uniper has announced that it has signed an agreement with Shell to progress plans to produce blue hydrogen at Uniper's Killingholme power station site, in the East of England. The hydrogen produced could be used to decarbonize industry, transport, and power throughout the Humber region.

Blue hydrogen refers to hydrogen produced by the reformation of natural gas, with the CO2 produced because of this process being captured and stored using CCS technology.

The Humber Hub Blue Project includes plans for a blue hydrogen production facility with a capacity of up to 720 megawatts (MW), using gas reformation technology with carbon capture and storage (CCS).

The captured carbon would be fed through the proposed Zero Carbon Humber onshore pipeline, part of the East Coast Cluster, recently selected as one of two carbon capture and storage schemes to receive initial government support under the Government's Cluster Sequencing Process.

The Humber Hub Blue Project recently passed the eligibility criteria for Phase-2 of the Government's Cluster Sequencing Process. Successful projects which could be eligible for Government funding will be shortlisted from May 2022. Phase-2 projects are expected to take final investment decisions from 2024 to then be operational from 2027.

Blue hydrogen production at Killingholme could see the capture of approximately 1.6 million metric tonnes (Mt) of carbon per year through CCS, making a significant contribution to the UK Government's target to capture 10Mt of carbon per year by 2030.

The agreement follows a memorandum of understanding signed by both companies in 2021 to explore accelerating the development of a hydrogen economy in Europe. Shell and Uniper will now jointly progress process design studies and site development activity, to take the project to Front End Engineering and Design (FEED) by 2023. 

Author : Debi Dash
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