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首页> 外文期刊>Journal of power sources >A direct ethylene glycol fuel cell stack as air-independent power sources for underwater and outer space applications
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A direct ethylene glycol fuel cell stack as air-independent power sources for underwater and outer space applications

机译:直接乙二醇燃料电池堆作为独立于空气的动力源,用于水下和外太空应用

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摘要

A passive direct ethylene glycol fuel cell stack is developed and tested, in which each single cell consists of an alkaline Pd-based anode, an acid Au-based cathode, and a cation exchange membrane. Experimentally, at the optimal reactant-feeding concentrations of 5.0 M EG and 9.0 M KOH as anolyte and 4.0 M H2O2 and 1.0 M H2SO4 as catholyte, this passive stack yields an open-circuit voltage of 3.0 V, a maximum current of 860 mA, and a peak power of 1178 mW at room temperature, which exhibits a two-time higher peak power density (24.5 mW cm(-2)) than a passive stack using the same type of fuel but the air as oxidant (12 mW cm(-2)). The impressive improvement can be ascribed to the faster hydrogen peroxide reduction reaction due to its two-electron transfer process rather than a four-electron process. In addition, the effects of feeding concentrations of reactants in both anolyte and catholyte on the stack performance are studied. Finally, the present passive stack is applied to power an electric fan for around 3 h under the mimetic underwater circumstance, demonstrating that this passive stack is a promising power source for airtight situations, such as underwater and outer space.
机译:开发并测试了无源直接乙二醇燃料电池堆,其中每个单个电池由碱性Pd基阳极,酸性Au基阴极和阳离子交换膜组成。实验上,在最佳进料浓度为5.0 M EG和9.0 M KOH作为阳极电解液,4.0 M H2O2和1.0 M H2SO4作为阴极电解液的情况下,该无源堆产生的开路电压为3.0 V,最大电流为860 mA,室温下的峰值功率为1178 mW,其峰值功率密度(24.5 mW cm(-2))比使用相同类型的燃料但以空气作为氧化剂的被动堆(12 mW cm(-2))高两倍。 -2))。令人印象深刻的改进可以归因于过氧化氢还原反应更快,这是由于其具有两个电子转移过程而不是四个电子过程。此外,还研究了阳极电解液和阴极电解液中反应物进料浓度对电池堆性能的影响。最后,在模拟的水下环境下,本无源烟囱可为电风扇供电约3小时,这表明该无源烟囱是用于水下和外太空等密闭情况的有希望的动力源。

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