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Modeling of SOFC running on partially pre-reformed gas mixture

机译:在部分预重整的混合气体上运行的SOFC的建模

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A two dimensional model is developed to study the transport and reaction processes in solid oxide fuel cells (SOFCs) fueled by partially pre-reformed gas mixture, considering the direct internal reforming (DIR) of methane and water gas shift (WGS) reaction in the porous anode of SOFC. Electrochemical oxidations of H_2 and CO fuels are both considered. The model consists of an electrochemical, a chemical model, and a computational fluid dynamics (CFD) model. Two chemical models are compared to examine their effects on SOFC modeling results. Different from the previous studies on hydrogen fueled SOFC, higher gas velocity is found to slightly decrease the performance of SOFC running on pre-reformed gas mixture, due to suppressed gas composition variation at a higher gas velocity. The current density distribution along the gas channels at an inlet temperature of 1173K is quite different from that at 1073K, as DIR reaction is facilitated at a higher temperature. It is also found that neglecting the electrochemical oxidation of CO can considerably underestimate the total current density of SOFC running on pre-reformed hydrocarbon fuels. An alternative method is proposed to numerically determine the open-circuit potential of SOFC running on hydrocarbon fuels. Electrochemical reactions are observed at open-circuit potentials.
机译:考虑到甲烷和水煤气变换(WGS)反应的直接内部重整(DIR),开发了一个二维模型来研究由部分预重整的气体混合物提供燃料的固体氧化物燃料电池(SOFC)的运输和反应过程。 SOFC的多孔阳极。都考虑了H_2和CO燃料的电化学氧化。该模型由电化学模型,化学模型和计算流体动力学(CFD)模型组成。比较了两种化学模型,以检查它们对SOFC建模结果的影响。与先前对氢燃料SOFC的研究不同,由于在较高气体速度下抑制了气体成分变化,因此较高的气体速度会稍微降低在预重整气体混合物上运行的SOFC的性能。入口温度为1173K时,沿气体通道的电流密度分布与1073K时的电流密度分布完全不同,因为在更高的温度下会促进DIR反应。还发现忽略CO的电化学氧化会大大低估在预重整烃燃料上运行的SOFC的总电流密度。提出了一种替代方法来数值确定以碳氢化合物燃料运行的SOFC的开路电势。在开路电势下观察到电化学反应。

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