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首页> 外文期刊>The Korean journal of chemical engineering >Effect of gas diffusion layer compression on the polarization curves of a polymer electrolyte membrane fuel cell: Analysis using a polarization curve-fitting model
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Effect of gas diffusion layer compression on the polarization curves of a polymer electrolyte membrane fuel cell: Analysis using a polarization curve-fitting model

机译:气体扩散层压缩对聚合物电解质膜燃料电池极化曲线的影响:使用极化曲线拟合模型的分析

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摘要

The effect of gas diffusion layer (GDL) compression on the polarization curves of a polymer electrolyte membrane fuel cell was analyzed using a polarization curve-fitting model. The polarization curves measured at four different GDL compression ratios were fitted with the model and were decomposed into an open circuit voltage and three over-voltages resulting from activation, ohmic, and mass-transport losses, respectively. The model fitting was excellent enough to use the model in the subsequent analysis of the GDL compression effect. The relationship between the over-voltages and the compression ratio was investigated by analyzing the estimated model parameters, and an optimal compression ratio was determined for the fuel cell. The proposed analysis method based on the polarization curve-fitting model can be applied to identifying quantitative differences of polarization curves under various operating conditions and designs for fuel cells.
机译:使用极化曲线拟合模型分析了气体扩散层(GDL)压缩对聚合物电解质膜燃料电池极化曲线的影响。该模型拟合了在四种不同的GDL压缩比下测得的极化曲线,并将其分解为开路电压和分别由激活,欧姆和质量损失引起的三个过电压。模型拟合非常好,足以在随后的GDL压缩效果分析中使用该模型。通过分析估计的模型参数研究过电压与压缩比之间的关系,并确定燃料电池的最佳压缩比。提出的基于极化曲线拟合模型的分析方法可用于识别各种工况和设计的燃料电池极化曲线的定量差异。

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