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Phosphine Induced Anode Performance Degradation in a Planer SOFC: A Numerical Study

机译:膦诱导阳极性能降解刨床SOFC:数值研究

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A mathematical model which was validated using button cells is used to predict the phosphine induced performance degradation in relatively large planar cells operating on hydrogen fuel. The empirical model parameters are calibrated using button cell experiments as guide. These parameters are then used to perform simulations to predict fuel contaminant performance degradation of planar cells. The results from the three dimensional model show that the contaminant coverage of Nickel and fuel distribution inside the anode is highly non-uniform. These non-uniform distributions are caused by the geometrical alignment of gas channels and current collectors, as well as the variation of gas concentration along the flow direction. The non uniform deactivation of anode gave raise to altering of current distribution inside the planar cell such that the cell can still produce current even when some regions of the anode are partially inactive. This is in stark contrast with what is observed in button cells where all the distributions are essentially one-dimensional. It is thus observed that the performance degradation rate for planar cells could be slower than that for similar button cells.
机译:使用按钮电池验证的数学模型用于预测在氢燃料上操作的相对大的平面细胞中的膦诱导性能下降。使用按钮单元实验校准经验模型参数作为指导。然后使用这些参数来进行模拟以预测平面细胞的燃料污染性能降低。三维模型的结果表明,阳极内镍和燃料分布的污染覆盖非常不均匀。这些不均匀的分布是由气体通道和集电器的几何对准引起的,以及沿着流动方向的气体浓度的变化引起。阳极的未均匀停用使得提升到平面电池内部的电流分布,使得即使当阳极的一些区域是部分不存在的,电池也可以产生电流。与在按钮单元中观察到的内容,这与所有分布基本上是一维的,这与略显的对比。因此观察到,平面电池的性能降解率可能比类似的按钮细胞慢。

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