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Endurance of Nafion-composite membranes in PEFCs operating at elevated temperature under low relative-humidity

机译:Nafion复合膜在低相对湿度下在高温下运行的PEFC中的耐力

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PEFCs employing Nafion-silica (Nafion-SiO2) and Nafion-mesoporous zirconium phosphate (Nafion-MZP) composite membranes are subjected to accelerated-durability test at 100?°C and 15% relative humidity (RH) at open-circuit voltage (OCV) for 50 h and performance compared with the PEFC employing pristine Nafion-1135 membrane. PEFCs with composite membranes sustain the operating voltage better with fluoride-ion-emission rate at least an order of magnitude lower than PEFC with pristine Nafion-1135 membrane. Reduced gas-crossover, fast fuel-cell-reaction kinetics and superior performance of the PEFCs with Nafion-SiO2 and Nafion-MZP composite membranes in relation to the PEFC with pristine Nafion-1135 membrane support the long-term operational usage of the former in PEFCs. An 8-cell PEFC stack employing Nafion-SiO2 composite membrane is also assembled and successfully operated at 60?°C without external humidification.
机译:使用Nafion二氧化硅(Nafion-SiO2)和Nafion介孔磷酸锆(Nafion-MZP)复合膜的PEFC在开路电压(OCV)下于100?C和15%相对湿度(RH)下进行加速耐久性测试),与使用原始Nafion-1135膜的PEFC相比,性能提高了50小时。带有复合膜的PEFC的氟离子发射率至少比带有Nafion-1135原始膜的PEFC低至少一个数量级。相对于带有原始Nafion-1135膜的PEFC,与Nafion-SiO2和Nafion-MZP复合膜相比,具有Nafion-SiO2和Nafion-MZP复合膜的PEFC的气体穿越减少,快速的燃料动力学和优越的性能,支持了前者在长期运行中的使用PEFC。还组装了采用Nafion-SiO2复合膜的8单元PEFC电池组,并在60°C的温度下成功运行,而无需外部加湿。

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