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STRATEGIES TO IMPROVE THE RELIABILITY OF ANODE-SUPPORTED SOLID OXIDE FUEL CELLS WITH RESPECT TO ANODE REOXIDATION

机译:提高阳极支持的固体氧化物燃料电池相对于阳极可再氧化的策略

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Solid oxide fuel cells (SOFCs) are highly efficient devices for converting the chemical energy of a fuel into electrical energy featuring high fuel flexibility. Forschungszentrum Jiilich has been developing the concept of a planar cell design based on a nickel/yttria-stabilized zirconia anode substrate for approximately twenty years. This development work covers the full spectrum ranging from fundamental research in materials science, processing and engineering issues, such as cell and stack design and construction aiming at stationary and mobile applications, up to cell and stack testing and system modeling. The main focus at present is the improvement of long-term stability and reliability for cells and stacks. This contribution will present the concept developed in Julich and the challenges and strategies involved in achieving better reliability here especially by the example of the problem of nickel reoxidation in the anode. Operating conditions causing nickel reoxidation may result in irreversible microstractural changes and macroscopic expansion of the anode, potentially leading to catastrophic cell failure.
机译:固体氧化物燃料电池(SOFC)是一种将燃料的化学能转换成电能的具有高燃料灵活性高效的设备。 Forschungszentrum Jiilich已经开发基于大约二十年镍/氧化钇稳定的氧化锆的阳极基板上的平面电池设计的概念。这种开发工作涵盖了全频谱范围从材料科学的基础研究,加工和工程问题,如电池和堆设计和建设针对固定和移动应用,达到细胞和堆栈测试和系统建模。目前的主要焦点是细胞和堆叠长期稳定性及可靠性的提高。这笔捐款将展示概念尤利希和参与特别是在阳极镍再氧化问题的例子在这里实现更好的可靠性的挑战和战略发展。引起再氧化镍的操作条件可导致不可逆的变化microstractural和阳极的宏观膨胀,可能导致灾难性的电池失效。

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