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Water transport characteristics in the gas diffusion media of proton exchange membrane fuel cell - Role of the microporous layer

机译:质子交换膜燃料电池气体扩散介质中的输水特性-微孔层的作用

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Water transport through the gas diffusion media of a proton exchange membrane fuel cell (PEMFC) was investigated with a focus on the role of the microporous layer (MPL) coated on the cathode gas diffusion layer (GDL). The capillary pressure of the MPL and GDL, which plays a significant role in water transport, is derived as a function of liquid saturation using a pore size distribution (PSD) model. PSD functions are derived with parameters that are determined by fitting to the measured total PSD data. Computed relations between capillary pressure and liquid saturation for a CDL and a double-layered GDL (GDL+MPL) show good agreement with the experimental data and proposed empirical functions. To investigate the role of the MPL, the relationship between the water withdrawal pressure and liquid saturation are derived for a double-layered GDL Water transport rates and cell voltages were obtained for various feed gas humidity using a two-dimensional cell model, and are compared with the experimental results. The calculated results for the net drag with application of the capillary pressure derived from the PSD model show good agreement with the experimental values. Furthermore, the results show that the effect of the MPL on the cell output voltage is significant in the range of high humidity operation.
机译:研究了水通过质子交换膜燃料电池(PEMFC)的气体扩散介质的传输,重点是涂覆在阴极气体扩散层(GDL)上的微孔层(MPL)的作用。 MPL和GDL的毛细压力在水的运输中起着重要的作用,它是使用孔径分布(PSD)模型得出的液体饱和度的函数。 PSD函数是通过参数来推导的,这些参数是通过拟合测得的总PSD数据确定的。 CDL和双层GDL(GDL + MPL)的毛细管压力与液体饱和度之间的计算关系与实验数据和拟议的经验函数显示出良好的一致性。为了研究MPL的作用,导出了双层GDL的取水压力与液体饱和度之间的关系。使用二维池模型,针对不同的进料气湿度,得出了水的输送速率和池电压,并进行了比较。与实验结果。应用从PSD模型导出的毛细压力计算的净阻力结果与实验值吻合良好。此外,结果表明,MPL对电池输出电压的影响在高湿度操作范围内很明显。

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