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首页> 外文期刊>Electrochemistry communications >Intermediate-temperature, non-humidified proton exchange membrane fuel cell with a highly proton-conducting Fe _0.4Ta _0.5P _2O _7 electrolyte
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Intermediate-temperature, non-humidified proton exchange membrane fuel cell with a highly proton-conducting Fe _0.4Ta _0.5P _2O _7 electrolyte

机译:具有高质子传导性Fe _0.4Ta _0.5P _2O _7电解质的中温非湿式质子交换膜燃料电池

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摘要

Proton exchange membrane fuel cell (PEMFC) operation below 100 °C causes CO poisoning of the anode catalyst and results in low reaction kinetics of the cathode catalyst. In addition, operation at high relative humidity requires a large-sized humidifier, thereby increasing the complexity of the fuel cell system. These problems can be avoided by operating fuel cells above 100 °C and under low relative humidity. We report the performance of a non-humidified hydrogen-air PEMFC using Fe _0.4Ta _0.5P _2O _7 as an electrolyte in the temperature range of 100-225 °C. The PEMFC with this electrolyte achieves open-circuit voltages of 1000 mV or higher at all temperatures tested and demonstrates decreasing voltage drop with increasing temperature. The resultant fuel cell provides a peak power density of 341 mW cm ~(- 2) at 225 °C, exhibiting stable chemical and thermal durability for 100 h.
机译:低于100°C的质子交换膜燃料电池(PEMFC)操作会导致阳极催化剂的CO中毒,并导致阴极催化剂的反应动力学降低。另外,在高相对湿度下操作需要大型加湿器,从而增加了燃料电池系统的复杂性。通过在高于100°C的温度和较低的相对湿度下运行燃料电池可以避免这些问题。我们报告了在100-225°C的温度范围内使用Fe _0.4Ta _0.5P _2O _7作为电解质的非湿润氢空气PEMFC的性能。带有这种电解质的PEMFC在所有测试温度下均能达到1000 mV或更高的开路电压,并证明随着温度的升高电压降减小。所得燃料电池在225°C时提供341 mW cm〜(-2)的峰值功率密度,在100小时内表现出稳定的化学和热耐久性。

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