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HomeGo-GreenGreen SteelInnovative Hydrogen Production Ceres and Shell's Partnership

Innovative Hydrogen Production Ceres and Shell’s Partnership

UK-based clean energy technology developer Ceres has entered the second phase of its partnership with global energy giant Shell. This collaboration focuses on designing a solid oxide electrolyser (SOEC) module tailored for large-scale industrial applications, including synthetic fuels, ammonia, and green steel production.

Building on the foundation laid in 2022, Ceres has successfully deployed a 1MW SOEC system at Shell’s R&D facility in Bangalore, India. This initial demonstration project provided critical insights and data, setting the stage for the next phase of development. The new contract aims to create a pressurized module design scalable to hundreds of megawatts, capable of integration with industrial plants to produce sustainable future fuels on a commercial scale.

SOEC technology is central to this initiative due to its substantial efficiency gains. By producing approximately 35% more hydrogen per unit of electrical energy when combined with heat from industrial processes, SOECs offer a highly efficient pathway for hydrogen production. The project will explore the potential of pressurized systems to further enhance efficiency, performance, and integration with existing industrial processes. The ultimate goal is to achieve a module-level efficiency of less than 36kWh/kg of hydrogen, aligning with the European Union’s 2030 SOE technology targets. This phase of the partnership underscores Ceres and Shell’s commitment to advancing clean energy technologies and addressing the growing demand for sustainable industrial solutions. By leveraging the data and insights from the 1MW demonstration project, the collaboration aims to develop a commercially viable and scalable solution for hydrogen production.

The implications of this project extend beyond mere technological advancement. The ability to produce hydrogen more efficiently could have a transformative impact on various industries, including synthetic fuels, ammonia production, and green steel manufacturing. These sectors are integral to the global push towards reducing carbon emissions and achieving sustainability targets. Moreover, this collaboration represents a critical step in the global energy transition, demonstrating the potential of innovative technologies to drive significant environmental and economic benefits. As the world grapples with the challenges of climate change, partnerships like that of Ceres and Shell highlight the importance of collaborative efforts in fostering a sustainable future. The Ceres-Shell partnership exemplifies a forward-thinking approach to energy innovation, promising significant advancements in hydrogen production technology. With the continued development and scaling of SOEC systems, this initiative has the potential to play a pivotal role in the global shift towards sustainable energy solutions.

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