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Analysis of proton exchange membrane fuel cell polarization losses at elevated temperature 120℃ and reduced relative humidity

机译:质子交换膜燃料电池在120℃高温和相对湿度降低下的极化损失分析

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Polarization losses of proton exchange membrane (PEM) fuel cells at 120℃ and reduced relative humidity (RH) were analyzed. Reduced RH affects membrane and electrode ionic resistance, catalytic activity and oxygen transport. For a cell made of Nation 112 membrane and electrodes that have 35 wt.% Nafion and 0.3 mg/cm{sup}2 platinum supported on carbon, membrane resistance at 20%RH was 0.407 Ω cm{sup}2 and electrode resistance 0.203 Ω cm{sup}2, significantly higher than 0.092 and 0.041 Ω cm{sup}2 at 100%RH, respectively. In the kinetically controlled region, 20%RH resulted in 96 mV more cathode activation loss than 100%RH. Compared to 100%, 20%RH also produced significant oxygen transport loss across the ionomer film in the electrode, 105 mV at 600 mA/cm{sup}2. The significant increase in polarization losses at elevated temperature and reduced RH indicates the extreme importance of designing electrodes for high temperature PEM fuel cells since membrane development has always taken most emphasis.
机译:分析了质子交换膜(PEM)燃料电池在120℃和降低的相对湿度(RH)下的极化损失。相对湿度降低会影响膜和电极的离子电阻,催化活性和氧气传输。对于由Nation 112膜和电极制成的电池,其中35%的Nafion和0.3 mg / cm {sup} 2铂负载在碳上,在20%RH时的膜电阻为0.407Ωcm {sup} 2,电极电阻为0.203Ω cm {sup} 2,分别明显高于100%RH时的0.092和0.041Ωcm {sup} 2。在动力学控制区域,相对于100%RH,20%RH导致阴极活化损失增加96 mV。与100%相比,20%RH还会在整个电极中的离聚物膜上产生明显的氧气传输损失,在600 mA / cm {sup} 2时为105 mV。高温下极化损耗的显着增加和相对湿度的降低表明高温PEM燃料电池的电极设计极为重要,因为膜的开发一直是最主要的重点。

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