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Carbon Oxidation in Fuel Cells and H2 Production

机译:碳氧化燃料电池和H2生产

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摘要

High temperature direct carbon fuel cells (DCFCs) offer potentially high efficiencies for conversion of the chemical energy of solid carbonaceous fuel(s) into electrical energy. DCFCs with molten metal anodes consume carbonaceous fuels by oxygen dissolved within the melt, which functions as an anode in an otherwise conventional solid oxide fuel cell (SOFC). Such reactors can also be used in electrolytic mode for reducing steam to hydrogen at the cathode, which enables the specific electrical energy consumption for H2 production to be decreased compared with conventional steam electrolysis. 2-D models have been developed to predict the behavior of a micro-tubular hollow fiber SOFC (ca. 1 mm ID) with a molten metal (Sn) anode, using assumed values for the anode exchange current density. Results are reported for the temperature dependence of open circuit potentials for the reactor: Sn | SnO2 | YSZ | Air measured using a pellet cell and compared with thermodynamic predictions.
机译:高温直接碳燃料电池(DCFCs)提供潜在的效率高固体化学能量的转换碳质燃料转化为电能。DCFCs熔融金属阳极消耗碳质燃料,氧气溶解在融化,在另一个函数作为阳极传统的固体氧化物燃料电池(SOFC)。反应堆也可以用于电解模式减少蒸汽在阴极氢,使特定的电能H2生产消费减少相比之下,传统的蒸汽电解。开发了二维模型来预测micro-tubular中空纤维固体氧化物燃料电池的行为(ID) 1毫米熔融金属(Sn)阳极,阳极使用假设值交换电流密度。开路电位的温度依赖性反应堆:Sn | SnO2 | YSZ |空气测量使用并与颗粒细胞热力学预测。

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