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Design of Leakage Gas Induction Channels for Reliable Planar-Type Solid Oxide Fuel Cell Stacks

机译:可靠平面型固体氧化物燃料电池堆漏气感应通道的设计

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The leakage of gas in a planar solid oxide fuel cell (SOFC) stack is one of the important factors associated with stack degradation. When the fuel leaks to the air electrode, the catalytic property of the cathode deteriorates. Further, when air leaks to the anode comprised of Ni metal, the electrolyte thin film is peeled from the anode surface as result of the re-oxidation of Ni. Therefore, one of the ways to prevent these deterioration characteristics of the SOFC stack is to design a sealing method that can prevent gas leakage. In this study, we have developed a stack with specially designed channels which incorporates sealing gaskets that release leaked gas to outside, thereby preventing it from flowing into the fuel and air electrodes and ensuring the stability of the SOFC stack. The stack is designed to function with 10×10 cm~2 size cells, and to undergo frequent thermal cycles rising from room temperature to operation temperature and then back to room temperature.
机译:平面固体氧化物燃料电池(SOFC)堆叠中的气体泄漏是与堆叠劣化相关的重要因素之一。当燃料泄漏到空气电极时,阴极的催化性劣化。此外,当空气泄漏到由Ni金属组成的阳极时,由于Ni的再氧化,电解质薄膜从阳极表面剥离。因此,防止SOFC堆叠的这些劣化特性的方法之一是设计一种可以防止气体泄漏的密封方法。在这项研究中,我们开发了一种具有专门设计通道的堆叠,该频道包括密封垫圈,该垫圈将泄漏的气体释放到外部,从而防止其流入燃料和空气电极并确保SOFC叠层的稳定性。该堆叠设计成用10×10cm〜2尺寸的电池起作用,并经过频繁的热循环从室温下升到操作温度,然后返回室温。

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