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Estimating Important Electrode Parameters of High Temperature PEM Fuel Cells by Fitting a Model to Polarisation Curves and Impedance Spectra

机译:通过对极化曲线和阻抗谱拟合模型估算高温PEM燃料电池的重要电极参数

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A high temperature PEM (HTPEM) fuel cell model capable of simulating both steady state and dynamic operation is presented. The purpose is to enable extraction of unknown parameters from sets of impedance spectra and polarisation curves. The model is fitted to two polarisation curves and four impedance spectra measured on a Dapozol 77 MEA. The model is capable of achieving good agreement with the recorded curves. Except at OCV, where the voltage is overpredicted, the simulated polarisation curves deviate maximum 3.0% from the measurements. The impedance spectra deviate maximum 3.7%. The fitted parameter values are within the range reported in literature. The only exception is the catalyst layer acid content, which is an order of magnitude lower. This may derive from acid migration. The model is used to illustrate the effect of reactant dynamics on the impedance spectrum. The model can aid in the analysis of data from degradation tests.
机译:提出了一种能够同时模拟稳态和动态运行的高温PEM(HTPEM)燃料电池模型。目的是能够从阻抗谱和极化曲线的集合中提取未知参数。该模型适合在Dapozol 77 MEA上测得的两条极化曲线和四个阻抗谱。该模型能够与记录的曲线很好地吻合。除了在OCV处过高预测电压外,模拟的极化曲线与测量值的最大偏差为3.0%。阻抗谱最大偏离3.7%。拟合的参数值在文献报道的范围内。唯一的例外是催化剂层的酸含量,其低一个数量级。这可能源于酸迁移。该模型用于说明反应物动力学对阻抗谱的影响。该模型可以帮助分析来自降级测试的数据。

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