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首页> 外文期刊>Fuel cells >Utilizing a Segmented Fuel Cell to Study the Effects of Electrode Coating Irregularities on PEM Fuel Cell Initial Performance
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Utilizing a Segmented Fuel Cell to Study the Effects of Electrode Coating Irregularities on PEM Fuel Cell Initial Performance

机译:利用分段燃料电池来研究电极涂层不规则性对PEM燃料电池初始性能的影响

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摘要

An understanding of the impact of coating irregularities on beginning of life polymer electrolyte fuel cell (PEMFC) performance is essential to develop and establish manufacturing tolerances for its components. Coating irregularities occurring in the fuel cell electrode can either possess acceptable process variations or potentially harmful defects. A segmented fuel cell (SFC) is employed to understand how 100% catalyst reduction irregularities ranging from 0.125 to 1 cm(2) in the cathode electrode of a 50 cm(2) sized cell impact spatial and total cell performance at dry and wet humidification conditions. By analyzing the data in a differential format the local performance effects of irregularity sizes down to 0.25 cm(2) were detected in the current distribution of the cell. Slight total cell performance impacts, due to irregularity sizes of 0.5 and 1 cm(2), were observed under dry operation and high current densities.
机译:理解涂层不规则性对生命聚合物电解质燃料电池(PEMFC)性能的影响对于产生和建立其组分的制造公差至关重要。 在燃料电池电极中发生的涂层不规则可以具有可接受的工艺变化或潜在有害的缺陷。 使用分段燃料电池(SFC)来了解在50cm(2)个尺寸的细胞冲击空间和总细胞性能下为0.125至1cm(2)的100%催化剂降低不规则性在0.125至1cm(2)中,在干燥和湿润的湿度下的总细胞性能 状况。 通过以差异格式分析数据,在电池的电流分布中检测到下降至0.25cm(2)的局部性能效果。 在干手术和高电流密度下观察到0.5和1cm(2)的不规则尺寸,略微的总细胞性能影响。

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