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Influence of Methanol Crossover on the Fuel Utilization of Passive Direct Methanol Fuel Cell

机译:甲醇穿越对被动式直接甲醇燃料电池燃料利用的影响

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The effect of methanol crossover on the fuel utilization of a passive direct methanol fuel cell (DMFC) was reported. The results revealed that the Faradaic efficiency decreased from 46.9 to 17.4% when methanol concentration increased from 1.0 to 8.0 mol L{sup}(-1) at the lower current density 11.1 mA cm{sup}(-2). However, the Faradaic efficiency increased from 14.7 to 31.3% when methanol concentration increased from 1.0 to 8.0 mol L{sup}(-1) at a higher current density of 44.4 mA cm{sup}(-2). On the other hand, although the amount of methanol was increased, the Faradaic efficiency did not change, obviously due to the uniform methanol crossover and methanol diffusion at the same methanol concentration and constant current.
机译:据报道,甲醇交换对被动式直接甲醇燃料电池(DMFC)的燃料利用率具有影响。结果表明,在较低的电流密度11.1 mA cm {sup}(-2)下,当甲醇浓度从1.0 mol L {sup}(-1)增加时,法拉第效率从46.9%降至17.4%。但是,当甲醇浓度从1.0 mol L {sup}(-1)增加到44.4 mA cm {sup}(-2)时,法拉第效率从14.7%增至31.3%。另一方面,尽管甲醇的量增加了,但法拉第效率没有改变,这显然是由于在相同的甲醇浓度和恒定电流下均匀的甲醇穿透和甲醇扩散。

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