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PERFORMANCE MODELING OF PEM FUEL CELL OPERATED ON REFORMATE

机译:重整后运行的PEM燃料电池性能建模

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摘要

A three-dimensional mathematical model of PEM fuel cell operated on reformate is developed based on our previous established fuel cell model (Zhou and Liu, 2001), by incorporating the adsorption and oxidation kinetics of CO on platinum surface proposed by Springer et al (1997, 2001). This model is capable of studying the effect of CO poisoning as well as the hydrogen dilution effect by inert gases. The adsorption and oxidation kinetics of CO on platinum surface are incorporated in the source terms of the species equations, thus basic form of the mathematical equations are the same as those used for PEM fuel cell operated on pure hydrogen. With this model, we can obtain detailed information on the CO poisoning and variation of CO and hydrogen concentrations inside the anode. The modeling results from this 3D model revealed many new phenomena that cannot be obtained from previous 1D or 2D models. The model can be used to provide guidance for anode design optimizations. In the paper, results of the effects of various operating and design parameters, such as anode flow rate, gas diffuser porosity, gas diffuser thickness, and the width of the collector plate shoulder, are also presented.
机译:通过结合Springer等人(1997年)提出的CO在铂表面上的吸附和氧化动力学,在我们先前建立的燃料电池模型(Zhou和Liu,2001)的基础上,开发了在重整产品上运行的PEM燃料电池的三维数学模型。 ,2001)。该模型能够研究CO中毒的影响以及惰性气体对氢的稀释作用。 CO在铂表面上的吸附和氧化动力学被纳入物种方程的来源项,因此数学方程的基本形式与在纯氢下运行的PEM燃料电池所使用的方程相同。使用此模型,我们可以获得有关CO中毒以及阳极内部CO和氢浓度变化的详细信息。此3D模型的建模结果揭示了许多新的现象,这些现象是以前的1D或2D模型无法获得的。该模型可用于为阳极设计优化提供指导。在本文中,还给出了各种操作和设计参数(例如阳极流量,气体扩散器孔隙率,气体扩散器厚度以及集电板肩部宽度)影响的结果。

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