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2D segment model for a solid oxide fuel cell with a mixed ionic and electronic conductor as electrolyte

机译:离子和电子混合导体为电解质的固体氧化物燃料电池的2D分段模型

摘要

A 2D segment model for a solid oxide fuel cell (SOFC) with a mixed ionic and electronic conductor (MIEC) as electrolyte is developed, considering the mass transport, electrochemical reaction and charge transport. The electrochemical reaction is described by the Butler-Volmer equation and the expression of the oxygen partial pressure at the reaction interface is obtained by the energy conservation analysis. The model results are compared with experimental data and good agreement is achieved. The characteristics of the SOFC with a samaria doped ceria (SDC) electrolyte are analyzed by this model. Parametric simulations are conducted to investigate the uniformity of the leakage current (electronic current) and oxygen partial pressure in the electrolyte under various operating conditions. The results provide fundamental information on the leakage current in a SOFC and can serve as a useful tool for design optimization.
机译:考虑质量传输,电化学反应和电荷传输,建立了以离子和电子导体(MIEC)混合为电解质的固体氧化物燃料电池(SOFC)的二维分段模型。用Butler-Volmer方程描述电化学反应,并通过能量守恒分析获得反应界面处的氧分压的表达式。将模型结果与实验数据进行比较,取得了很好的一致性。通过该模型分析了具有掺杂samaria的二氧化铈(SDC)电解质的SOFC的特性。进行参数模拟以研究在各种操作条件下电解液中泄漏电流(电子电流)和氧分压的均匀性。结果提供了关于SOFC中泄漏电流的基本信息,并且可以用作设计优化的有用工具。

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  • 作者

    Shen S; Ni M;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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