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Computational fluid dynamics study on the anode feed solid polymer electrolyte water electrolysis

机译:阳极进料固体聚合物电解质水电解的计算流体动力学研究

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A steady-state two-dimensional model for the anode feed solid polymer electrolyte water electrolysis (SPEWE) is proposed in this paper. Finite element procedure was employed to calculate the multicomponent transfer model coupled with fluid flow in flow channels and gas diffusion layers and electrochemical kinetics in catalyst reactive surface. The performance of the anode feed SPEWE predicted by this model was compared with the published experimental results and reasonable agreement was reached. The results show that oxygen mass fraction increases because of the water oxidation when water flows from the import to the export on the anode side. On the cathode side, hydrogen mass fraction varies little since hydrogen and water mix well. The flux of water across the electrolyte increased almost linearly with the increase of the applied current density. Since the ohmic overpotential loss increasing as the solid polymer electrolytes' thickness increasing, the performance of the anode feed SPEWE with Nafion 112, 115, 117 decreases at the same applied current density.
机译:提出了阳极进料固体聚合物电解质水电解(SPEWE)的稳态二维模型。采用有限元程序来计算多组分传递模型,以及在流道和气体扩散层中的流体流动以及催化剂反应表面的电化学动力学。通过该模型预测的阳极进料SPEWE的性能与已发表的实验结果进行了比较,并达成了合理的共识。结果表明,当水从阳极侧的入口流向出口时,由于水的氧化,氧气质量分数增加。在阴极侧,氢质量分数变化很小,因为氢和水混合得很好。穿过电解质的水通量几乎随着施加的电流密度的增加而线性增加。由于欧姆超电势损耗随固体聚合物电解质厚度的增加而增加,因此在相同的施加电流密度下,带有Nafion 112、115、117的阳极进料SPEWE的性能会降低。

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