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EXPERIMENT STUDY ON THE CURRENT DENSITY DISTRIBUTION OF PEMFC BY SEGMENTED CELL TECHNOLOGY

机译:分段细胞技术对PEMFC电流密度分布的实验研究

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The homogeneous of current density distribution is very important for performance and lifetime of proton exchange membrane fuel cell. In this study, the current density distribution of a fuel cell with an active area of 108 cm~2 has been investigated by using segmented cell technology. The σ_c is introduced to evaluate the homogeneity of current density and the smaller value of σ_c represents better homogeneity of current distribution. Under normal conditions, the experimental results show that the current density decreases progressively along the flow field at low cathode stoichiometry. It is also found that the homogeneity of current distribution has a strong correlation with the membrane hydration condition and always performs best at cathode relative humidity of 80% when anode condition keeps constant. The value of σ_c can be significantly reduced when cathode stoichiometry increases from 1.5 to 2.5, but it changes little when cathode stoichiometry continues to increase. During the cold start process, the evolutions of current density distribution are consistent with the temperature mappings. The form of stabilized heat core in the middle regions and homogeneous current density distribution are necessary for successful cold start. The value of σ_c also can be used to evaluate that the cold start succeeds or not.
机译:电流密度分布的均匀性对于质子交换膜燃料电池的性能和寿命非常重要。在该研究中,通过使用分段的电池技术研究了具有108cm〜2的有效面积的燃料电池的电流密度分布。引入σ_c以评估电流密度的均匀性,σ_c的较小值表示电流分布的更好均匀性。在正常条件下,实验结果表明,电流密度沿着低阴极化学计量的流场逐渐降低。还发现电流分布的均匀性与膜水合条件具有强烈的相关性,并且当阳极状态保持恒定时,在80%的阴极相对湿度下始终最佳地表现。当阴极化学计量从1.5到2.5增加时,σ_c的值可以显着降低,但是当阴极化学计量继续增加时它几乎变化。在冷启动过程中,电流密度分布的演变与温度映射一致。中间区域和均匀电流密度分布中稳定的热芯的形式对于成功的冷启动是必需的。 Σ_c的值也可用于评估冷启动成功。

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