Accelera to Supply 100 MW PEM Electrolyzer System for bp's Lingen Green Hydrogen Project in Germany
Key Ideas
- Accelera's 100 MW PEM electrolyzer system powered by renewable energy will produce 11,000 tons of green hydrogen annually for bp's Lingen plant.
- The project will support Germany's hydrogen economy by supplying hydrogen to bp's Lingen refinery and regional industrial customers.
- This initiative showcases technological innovation with Accelera's advanced PEM electrolyzer technology, enhancing efficiency and scalability.
- Accelera's collaboration with bp highlights the commitment to sustainable energy solutions and the growth of the green hydrogen economy in Europe.
Accelera™ by Cummins, the zero-emissions business segment of Cummins Inc., will supply a 100-megawatt proton exchange membrane (PEM) electrolyzer system for bp's Lingen green hydrogen project in Germany. The project, bp's largest hydrogen production plant to date, will utilize Accelera's advanced HyLYZER® PEM electrolyzer technology. The 100 MW electrolyzer system, consisting of 20 PEM HyLYZER®-1000 units, will be powered by renewable electricity from offshore wind, ensuring the production of green hydrogen. The hydrogen generated will support bp's Lingen refinery and industrial customers in the region, aiding the development of Germany's hydrogen economy. Accelera's PEM electrolyzer technology, known for its efficiency and scalability, will play a key role in this project. Felipe Arbelaez from bp highlighted the regional economic benefits and sustainability goals achieved through the Lingen green hydrogen initiative. The partnership between Accelera and bp emphasizes the advancement of the green hydrogen economy and the transition to low-carbon industrial operations. Accelera, a leader in large-scale hydrogen production, has a strong global presence with successful projects in Canada and the U.S. The collaboration between Accelera and bp represents a significant step towards a sustainable future and demonstrates the commitment to accelerating the clean energy transition.
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