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Enhanced reliability of planar-type solid oxide fuel cell stack incorporating leakage gas induction channels

机译:带有泄漏气体感应通道的平面型固体氧化物燃料电池堆的增强的可靠性

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摘要

Planar type solid oxide fuel cell stacks have been studied for use as commercial products because of their high energy density and environment-friendly operation. They employ a gasket as a sealant as it enables easy assembly and repair. However, its imperfect sealing property, detrimental to long-term operation, has limited its introduction. Here, a stack design with a gasket sealant including a leakage gas induction channel is developed. The leakage gas induction channel within the gasket sealant prevents gas leakage of fuel and air to the opposite electrode and ensures the stack's stable operation. The stack design's reliability is confirmed via a heating-cycle test and an open circuit voltage to a 0.7 V voltage control test. In-situ gas chromatography analysis shows that the diffusion of gases effectively reduces by releasing them outside the stack through the leakage gas induction channel. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:平面型固体氧化物燃料电池堆由于其高能量密度和环境友好的操作而被研究用作商业产品。它们采用垫片作为密封剂,因为它易于组装和维修。但是,其不完美的密封性能不利于长期运行,限制了其引入。在此,开发了具有包括泄漏气体引入通道的垫片密封剂的堆叠设计。垫圈密封剂内的泄漏气体感应通道可防止燃料和空气泄漏到对面的电极,并确保电池组的稳定运行。叠层设计的可靠性通过加热循环测试和0.7 V电压控制测试的开路电压得到确认。原位气相色谱分析表明,通过将气体通过泄漏气体诱导通道释放到烟囱外部,可以有效减少气体扩散。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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