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Study on LiI and KI with low melting temperature for electrolyte replenishment in molten carbonate fuel cells

机译:低熔点LiI和KI用于熔融碳酸盐燃料电池中电解质补充的研究

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Molten carbonate fuel cells (MCFCs) are regarded as the closest fuel cell to commercialization due to their high capacity and energy efficiency. However, they are operated at a high temperature (620 degrees C or higher), where liquid electrolyte loss occurs during operation; hence, their lifetime is limited. For the long-term operation of MCFCs, it is essential to develop a novel method to replenish the electrolyte during operation. However, it is very difficult to directly inject the electrolyte, (Li0.62K0.38)(2)CO3, into each unit cell of the stack unless it is supplemented through liquid or gas phase at low temperature. It was verified whether LiI and KI, which have low melting points and high vapor pressures, could replenish the lost electrolyte in MCFCs. In this study, the LiI and KI injected into the unit cell in liquid phase showed a similar tendency to the Li/K carbonate electrolyte. This is because LiI and KI react with the CO2/O-2 gases supplied to the cathode during MCFC operation to form Li/K carbonate electrolytes. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:熔融碳酸盐燃料电池(MCFC)由于其高容量和高能效而被认为是最接近商业化的燃料电池。但是,它们是在高温(620摄氏度或更高)下运行的,在此过程中会发生电解液损耗。因此,它们的寿命是有限的。对于MCFC的长期运行,必须开发一种在运行过程中补充电解液的新颖方法。但是,很难将电解质(Li0.62K0.38)(2)CO3直接注入到电池组的每个单元电池中,除非在低温下通过液相或气相对其进行补充。已证实熔点低,蒸气压高的LiI和KI是否可以补充MCFC中损失的电解质。在这项研究中,在液相中注入到单元电池中的LiI和KI显示出与Li / K碳酸盐电解质相似的趋势。这是因为在MCFC操作期间,LiI和KI与供应给阴极的CO2 / O-2气体反应形成Li / K碳酸盐电解质。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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