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Co-Electrolysis with CFY-Stacks

机译:用CFY堆叠共同电解

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摘要

The efficient high temperature electrolysis of steam (H_2O) as well as steam and CO_2 co-electrolysis is of interest for potential application in a renewable energy system. The development of power-to-product processes as well as necessary components are in focus of current research activities at IKTS. The main system component is a high temperature electrolyzer (SOEC). In collaboration with Plansee SE the robust CFY stack technology has been developed over last ten years. This stack technology can be applied for SOFC, SOEC and reversible operation (rSOC) and establishes a universal platform for different applications. Performance maps of a MK352 CFY stack (shown in Figure 1) in steam and co-electrolysis operation show a difference in electric power demand of less than 2%. The output syngas can be directly adjusted to typical compositions used for reactions like Fischer-Tropsch synthesis by choosing appropriate operating conditions for the SOEC. Based on this approach the co-electrolysis operating conditions were selected. The results of the stack durability tests (>4000 h) are shown and discussed.
机译:蒸汽(H_2O)的有效高温电解以及蒸汽和CO_2共电解对于可再生能源系统中的潜在应用感兴趣。电力到产品流程以及必要的组件的开发是IKTS当前研究活动的焦点。主系统组件是高温电解器(SOEC)。与Plansee SE合作,强大的CFY堆栈技术已经在过去十年中开发出来。该堆栈技术可用于SOFC,SOEC和可逆操作(RSOC),并为不同应用建立通用平台。 MK352 CFY堆栈的性能图(如图1所示)在蒸汽和共电解操作中显示出低于2%的电力需求差异。可以通过为SOEC选择适当的操作条件,直接调节到用于诸如Fischer-Tropsch合成等反应的典型组合物。基于这种方法,选择了共电解操作条件。显示并讨论了堆叠耐久性测试(> 4000H)的结果。

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