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首页> 外文期刊>Journal of power sources >Development of a tubular molten carbonate direct carbon fuel cell and basic cell performance
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Development of a tubular molten carbonate direct carbon fuel cell and basic cell performance

机译:管状熔融碳酸盐直接碳燃料电池的开发和基本电池性能

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Direct carbon fuel cells (DCFCs) are expected to be useful devices that effectively utilize carbon resources. In this study, a tubular and molten carbonate electrolyte type DCFC (TMC-DCFC) was conceived and its basic performance was investigated. Continuous power generation tests were conducted using a fuel mixture consisting of activated carbon and Li/Na carbonate powders such that stable power generation of about 100 mW cm(-2) for 24 h was achieved. The temperature dependency of the I-V curves showed that the performance of the TMC-DCFC increased as the operating temperature increased. Analysis of the gas composition at the outlet of the anode indicated that most of the generated gas was CO. It is considered that CO was generated by the reverse Bou-douard reaction between the solid carbon in the fuel and the CO2 generated at the anode. As a result of calculation of energy balance for the TMC-DCFC, the electrical efficiency was 20.4% and the heat value of generated CO was 79.6%. This result suggests that TMC-DCFC can generate both electric power and CO with high effective utilization of carbon.
机译:直接碳燃料电池(DCFC)有望成为有效利用碳资源的有用设备。在这项研究中,设想了管状和熔融碳酸盐电解质类型的DCFC(TMC-DCFC),并研究了其基本性能。使用由活性炭和锂/碳酸钠粉末组成的混合燃料进行了连续发电测试,从而在24小时内实现了约100 mW cm(-2)的稳定发电。 I-V曲线的温度依赖性表明,随着工作温度的升高,TMC-DCFC的性能也随之提高。对阳极出口处的气体组成的分析表明,大部分产生的气体为CO。可以认为,CO是通过燃料中的固体碳与阳极产生的CO2之间的反向Bou-douard反应产生的。计算出TMC-DCFC的能量平衡的结果是,电效率为20.4%,产生的CO的热值为79.6%。该结果表明,TMC-DCFC可以高效地利用碳来产生电力和CO。

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