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Significance of diffusion layers on the performance of liquid and vapor feed passive direct methanol fuel cells

机译:扩散层对液体和蒸汽饲料无源直接甲醇燃料电池性能的显着性

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摘要

Passive direct methanol fuel cell (pDMFC) has attracted the attention of scientists due to its high energy density. Under passive operating conditions, the properties of the diffusion layer significantly affect cell performance. In this study, the effect of the surface morphology, structure, permeability of diffusion layers (PTFE-treated carbon paper (CP) or carbon cloth (CC)) on the catalyst utilization, methanol, water fluxes, Faraday efficiency, and current discharge in pDMFC were investigated in liquid and vapor feed pDMFCs. Although catalyst utilization using the CP was higher than that using CC, the performance using the latter was enhanced in both liquid and vapor methanol feed. In liquid feed pDMFC, the optimum methanol concentration in the case of CC was 4 M, giving a power of 31 mW/cm~2 compared to an optimum of 2 M and a power of 27 mW/cm~2 in the case of CP. Although CP and CC have the same hy-drophobicity, water droplet detachment from the cathode surface was easier in the case of CC compared to CP. In vapor feed pDMFC, using 100 wt% methanol at 0.25 V, the steady-state performance (29 mW/cm~2) using CC was 190% of that using CP. Under active operation conditions, the performance of cell using CP is better than that using the CC due to the high catalyst utilization and the limited mass transfer effect.
机译:由于其高能量密度,被动直接甲醇燃料电池(PDMFC)引起了科学家的注意力。在被动操作条件下,扩散层的性质显着影响细胞性能。在本研究中,对催化剂利用,甲醇,水助熔剂,法拉第效率和电流放电,表面形貌,结构,扩散层的渗透率(CP)或碳布(CC))的影响在液体和蒸气饲料PDMFC中研究了PDMFC。尽管使用CP的催化剂利用率高于使用CC,但在液体和蒸气甲醇进料中,使用后者的性能得到增强。在液体进料PDMFC中,CC的情况下的最佳甲醇浓度为4米,其功率为31mW / cm〜2,与CP的情况下为2M和27mW / cm〜2的功率相比。尽管CP和CC具有相同的Hy-刺激性,但是在CC与CP相比,来自阴极表面的水滴脱落更容易。在蒸汽进料PDMFC中,使用0.25 V的100wt%甲醇,使用CC的稳态性能(29mW / cm〜2)的使用CP的190%。在主动操作条件下,由于高催化剂利用率和有限的传质效应,使用CP的细胞性能优于使用CC。

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