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Influence of properties of gas diffusion layers on the performance of polymer electrolyte-based unitized reversible fuel cells

机译:气体扩散层的性质对高分子电解质基可逆燃料电池性能的影响

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摘要

Polymer electrolyte-based unitized reversible fuel cells (URFCs) combine the functionality of a fuel cell and an electrolyzer in a single device. In a URFC, titanium (Ti)-felt is used as a gas diffusion layer (GDL) of the oxygen electrode, whereas typical carbon paper is used as a GDL of the hydrogen electrode. Different samples of Ti-felt with different structural properties (porosity and fiber diameter) and PTFE content were prepared for use as GDLs of the oxygen electrode, and the relation between the properties of the GDL and the fuel cell performance was examined for both fuel cell and electrolysis operation modes. Experimental results showed that the cell with a Ti-felt GDL of 80 μm fiber diameter had the highest round-trip efficiency due to excellent fuel cell operation under relatively high-humidity conditions despite degradation in performance in the electrolysis mode.
机译:基于聚合物电解质的单元可逆燃料电池(URFC)在单个设备中结合了燃料电池和电解槽的功能。在URFC中,钛(Ti)毡被用作氧电极的气体扩散层(GDL),而典型的碳纸被用作氢电极的GDL。制备了具有不同结构特性(孔隙率和纤维直径)和PTFE含量的Ti毡样品,用作氧气电极的GDL,并研究了两种燃料电池的GDL特性与燃料电池性能之间的关系。和电解操作模式。实验结果表明,尽管在电解模式下性能下降,但由于在相对较高的湿度条件下具有出色的燃料电池性能,具有80微米纤维直径的Ti-felt GDL的电池具有最高的往返效率。

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