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Non-uniform agglomerate cathode catalyst layer model on the performance of PEMFC with consideration of water effect

机译:考虑水效应的基于PEMFC性能的不均匀团聚阴极催化剂层模型

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We focus on the effect of cathode catalyst layer physical structure on the cell performance of proton exchange membrane fuel cell (PEMFC). At low polarization, high inlet humidification predicts better cell performance because of the more active surface in the CL. As polarization is extended near the mass transfer limited regime, high humidification only renders a flooded electrode and inferior cell performance. Catalyst layer with better capillary water transport parameters performs better than that with inferior water repulsion capability. Permeation in the gas diffusion layer (GDL) is important for efficient oxygen diffusion in mass transfer influenced regime. On the other hand, the permeability in catalyst layer only has secondary effect.
机译:我们专注于阴极催化剂层物理结构对质子交换膜燃料电池(PEMFC)电池性能的影响。在低极化状态下,由于CL中的表面更活跃,因此较高的入口加湿度可预测更好的电池性能。随着极化在传质限制范围附近扩展,高湿度只会使电极泛滥,而电池性能也会下降。具有更好的毛细管水传输参数的催化剂层的性能优于具有较差的斥水能力的催化剂层。气体扩散层(GDL)中的渗透对于受传质影响的体系中有效的氧气扩散非常重要。另一方面,催化剂层中的渗透性仅具有次要作用。

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