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首页> 外文期刊>Electrochimica Acta >Gas diffusion layer/flow-field unified membrane-electrode assembly in fuel cell using graphene foam
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Gas diffusion layer/flow-field unified membrane-electrode assembly in fuel cell using graphene foam

机译:使用石墨烯泡沫的燃料电池中的气体扩散层/流场统一膜电极组件

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摘要

The integration of a gas diffusion layer with a flow-field is essential for enhancing the polymer electrolyte membrane fuel cell performance. This is achieved by exploiting the ability of a gas diffusion layer-flow-field combination to decrease the size of the reactant pathway and the thickness of the membrane-electrode assembly, thereby reducing electrical and mass transport resistance. This study proposes a unified membrane-electrode assembly that incorporates graphene foam that functions as both a flow-field and a gas diffusion layer. The unified membrane-electrode assembly exhibits higher performance than conventional membrane-electrode assembly on overall current densities region, which is attributed to the increased the pressure drop. Furthermore, its estimated volume power density can be increased because of the 82% decrease in its thickness. Also, the simulation results show that this design enhances the exchange current density due to pressure drop in the graphene foam. (C) 2019 Elsevier Ltd. All rights reserved.
机译:气体扩散层与流场的整合对于增强聚合物电解质膜燃料电池性能是必不可少的。这是通过利用气体扩散层 - 流场组合来降低反应物途径的尺寸和膜 - 电极组件的厚度的能力来实现的,从而降低电力和质量传输。该研究提出了一种统一的膜 - 电极组件,其包含作为流场和气体扩散层的塑造成的石墨烯泡沫。统一的膜 - 电极组件在总电流密度区域上具有比传统膜电极组件更高的性能,这归因于增加压降。此外,由于其厚度的降低82%,其估计的体积功率密度可以增加。此外,仿真结果表明,该设计由于石墨烯泡沫中的压降而增强了交换电流密度。 (c)2019 Elsevier Ltd.保留所有权利。

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