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首页> 外文期刊>Journal of power sources >Modeling Of Methane Fed Solid Oxide Fuel Cells: Comparison Between Proton Conducting Electrolyte And Oxygen Ion Conducting Electrolyte
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Modeling Of Methane Fed Solid Oxide Fuel Cells: Comparison Between Proton Conducting Electrolyte And Oxygen Ion Conducting Electrolyte

机译:甲烷供料的固体氧化物燃料电池的建模:质子传导电解质和氧离子传导电解质的比较

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An electrochemical model was developed to study the methane (CH_4) fed solid oxide fuel cell (SOFC) using proton conducting electrolyte (SOFC-H) and oxygen ion conducting electrolyte (SOFC-O). Both the internal methane steam reforming (MSR) and water gas shift (WGS) reactions are considered in the model. Previous study has shown that the CH_4 fed SOFC-H had significantly better performance than the SOFC-O. However, the present study reveals that the actual performance of the CH_4 fed SOFC-H is considerably lower than the SOFC-O, partly due to higher ohmic overpotential of SOFC-H. It is also found that the CH4 fed SOFC-H has considerably higher cathode concentration overpotential and lower anode concentration overpotential than the SOFC-O. The anode concentration overpotentials of the CH4 fed SOFC-H and SOFC-O are found to decrease with increasing temperature, which is different from previous analyses on the H2 fed SOFC. Therefore, high temperature is desirable for increasing the potential of the CH_4 fed SOFC. It is also found that there exist optimal electrode porosities that minimize the electrode total overpotentials. The analyses provided in this paper signify the difference between the CH_4 fed SOFC-H and SOFC-O. The model developed in this paper can be extended to 2D or 3D models to study the performance of practical SOFC systems.
机译:建立了电化学模型,以研究使用质子传导电解质(SOFC-H)和氧离子传导电解质(SOFC-O)的甲烷(CH_4)固体氧化物燃料电池(SOFC)。该模型同时考虑了内部甲烷蒸汽重整(MSR)和水煤气变换(WGS)反应。先前的研究表明,CH_4加料的SOFC-H的性能明显优于SOFC-O。但是,本研究表明,CH_4进料的SOFC-H的实际性能大大低于SOFC-O,部分原因是SOFC-H的欧姆超电势较高。还发现,CH4进料的SOFC-H比SOFC-O具有显着更高的阴极浓度过电势和更低的阳极浓度过电势。发现CH4进料的SOFC-H和SOFC-O的阳极浓度过电势随温度升高而降低,这与之前对H2进料的SOFC的分析不同。因此,需要高温以增加CH_4进料的SOFC的电势。还发现存在最佳的电极孔隙率,其使电极的总超电势最小化。本文提供的分析表明,CH_4进料的SOFC-H和SOFC-O之间存在差异。本文开发的模型可以扩展到2D或3D模型,以研究实际SOFC系统的性能。

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