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Thermodynamic analysis of methane-fueled solid oxide fuel cells considering co electrochemical oxidation

机译:考虑共电化学氧化的甲烷燃料固体氧化物燃料电池热力学分析

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摘要

Thermodynamic analyses in the literature have shown that solid oxide fuel cells (SOFCs) with proton conducting electrolyte (H-SOFC) exhibited higher performance than SOFC with oxygen ion conducting electrolyte (O-SOFC). However, these studies only consider H2 electrochemical oxidation and totally neglect the contribution of CO electrochemical oxidation in O-SOFC. In this short communication, a thermodynamic model is developed to compare the theoretically maximum efficiencies of H-SOFC and O-SOFC, considering the electrochemical oxidation of CO in O-SOFC anode. It is found that O-SOFC exhibits a higher maximum efficiency than H-SOFC due to the contribution from CO electrochemical oxidation, which is contrary to the common understanding of electrolyte effect on SOFC performance. The effects of operating temperature and fuel utilization factor on the theoretical efficiency of SOFC are also analyzed and discussed.
机译:文献中的热力学分析表明,具有质子传导电解质(H-SOFC)的固体氧化物燃料电池(SOFC)的性能优于具有氧离子传导电解质(O-SOFC)的SOFC。但是,这些研究仅考虑了H2电化学氧化,而完全忽略了CO电化学氧化在O-SOFC中的作用。在这种简短的交流中,考虑到在O-SOFC阳极中CO的电化学氧化,建立了一个热力学模型以比较H-SOFC和O-SOFC的理论最大效率。发现由于CO电化学氧化的作用,O-SOFC比H-SOFC具有更高的最大效率,这与对电解质对SOFC性能的普遍理解相反。分析和讨论了工作温度和燃料利用率对SOFC理论效率的影响。

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  • 作者

    Sun, Q; Zheng, K; Ni, M;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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