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The objective of this thesis is to analyse selected heat integration and thermal energy storage concepts for an rSOC system. The work builds on models developed in Aspen Plus and MATLAB/Simulink, which will be extended with suitable thermal components. Selected system layouts and operating cases...
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A promising technology investigated at IET-1 is the reversible Solid Oxide Cell (rSOC), which enables the efficient conversion of electrical energy into hydrogen and vice versa. When integrated with
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-funded collaborative research project SOCool, a completely novel approach to the fabrication of metal-supported solid oxide electrolysis cells (MS-SOECs) will be developed. The proposed cell concept is
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high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state batteries, thermal barrier coatings
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on the development of advanced energy converters and high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state
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For the team of the Chair of Energy Systems the following position is available Visiting Scientist for Reversible Solid Oxide Fuel Cells in the Future Laboratory Green Hydrogen (m/f/x) for the next possible date