H2Teesside project targeted 1.2GW low-carbon hydrogen production in the United Kingdom

Technip Energies has been awarded the Front-End Engineering Design (FEED) contract by BP for the H2Teesside project in the Northeast of the United Kingdom. H2Teesside is expected to be one of the UK’s largest  low-carbon hydrogen production facilities, fully integrated with carbon capture technology.

The project targets 1.2 GW of low-carbon hydrogen production, equating to more than 10% of the UK’s 2030 hydrogen production target.

As part of the FEED study, Technip Energies will deliver a comprehensive design, utilizing their in-house expertise and global best practices to design a large-scale project integrating hydrogen and carbon capture technologies.

In the perspective of a 2025 final investment decision, the next step for Technip Energies, if selected, will be to provide the full Engineering Procurement, Construction and Commissioning (EPCC) package for the project.

As part of the East Coast Cluster, the integrated H2Teesside hydrogen production and hydrogen distribution pipeline will integrate with other decarbonisation projects in the region. The CO2 captured from the H2Teesside facility will be exported to the Northern Endurance Partnership (NEP) CO2 gathering system.

Mario Tommaselli commented: “Being selected for BP’s H2Teesside project highlights Technip Energies’ proven experience in working as a technology integrator on large-scale projects. By leveraging our extensive expertise in hydrogen and carbon capture technologies, we are well-positioned to deliver innovative at-scale solutions that align with the UK’s ambitious decarbonization targets.”

Andy Lane said: “These agreements mark further critical milestones for H2Teesside as the project continues to move towards EPC contracts and then construction. The project could play a critical role in decarbonising industry on Teesside, helping to transform the region into a leading hydrogen hub and kickstart the UK’s low carbon hydrogen economy.”

Back to top button