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Effect of GDM Pairing on PEMFC Performance in Flow-Through and Dead-Ended Anode Mode

机译:GDM配对对流通式和无末端阳极模式下PEMFC性能的影响

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摘要

Asymmetric gas diffusion media (GDM) pairing, which feature distinct GDM at the anode and cathode of the proton electrolyte membrane fuel cell (PEMFC), enhance water management compared to symmetric pairing of GDM (anode and cathode GDM are identical). An asymmetric pairing of Freudenberg GDM (H24C3 at anode and H23C2 at cathode) reduces ohmic resistances by up to 40% and oxygen transport resistances by 14% en route to 25% higher current density in dry gas flows. The asymmetric GDM pairing effectively hydrates the membrane electrode assembly (MEA) while minimizing liquid water saturation in the cathode compared to a commonly used symmetric GDM pairing of SGL 29BC at the anode and cathode. Superior water management observed with asymmetric GDM in flow-through mode is also realized in dead-ended anode (DEA) mode. Compared to the symmetric GDM pairing, the asymmetric GDM pairing with Freudenberg GDM increases cell voltage at all current densities, extends and stabilizes steady-state voltage behavior, slows voltage decay, and vastly reduces the frequency of anode purge events. These results support that the asymmetric Freudenberg GDM combination renders the PEMFC less prone to anode water saturation and performance loss from the anticipated increase in water back-diffusion during DEA mode operation.
机译:与GDM对称配对(阳极和阴极GDM相同)相比,非对称气体扩散介质(GDM)配对在质子电解质膜燃料电池(PEMFC)的阳极和阴极处具有明显的GDM,可增强水管理。 Freudenberg GDM(阳极处的H24C3和阴极处的H23C2)的不对称配对可将欧姆电阻降低40%,将氧气传输电阻降低14%,从而在干燥气流中将电流密度提高25%。与通常在阳极和阴极使用的SGL 29BC对称GDM配对相比,不对称GDM配对有效地水化了膜电极组件(MEA),同时使阴极中的液态水饱和度最小。在死角阳极(DEA)模式下,也可以在流通模式下使用非对称GDM观察到卓越的水管理。与对称GDM配对相比,与科德宝GDM进行的非对称GDM配对可在所有电流密度下增加电池电压,扩展并稳定稳态电压行为,减缓电压衰减,并大大降低阳极吹扫事件的频率。这些结果支持非对称的科德宝GDM组合使PEMFC不太容易因DEA模式运行期间水回扩散的预期增加而导致阳极水饱和和性能损失。

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