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A Parametric Study of SOFC Performances with Multi-Stage Electrochemical Oxidation for Enhancement of Electric Efficiency

机译:多级电化学氧化提高电力效率的SOFC性能的参数研究

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The solid-state ceramic construction of SOFCs enables high fuel to electricity conversion efficiencies of as high as 50 to 60 percent LHV in high temperature operation, and allows more flexibility in fuel choice. In this study, we have devebped a symbolic analysis method to investigate the availability of variable parameters appearing in multi-stage electrochemical oxidation mechanism that is expected to further improve the electric efficiencies of SOFCs. In the flow system of the multi-stage oxidation, the fuel utilization, Uf, at the most downstream stack, Uf_M, is expressed as a function of number of stacks, n, and total fuel utilization, Uf_T. When n = 10 and Uf_T = 85%, Uf_M is calculated to be 36%, which is much smaller than Uf_T. Therefore, if the most downstream stack has high robustness against lean fuel gas, Uf_T could be set to higher values without serious degradation by using this flow system.
机译:SOFC的固态陶瓷结构在高温操作中实现了高达50%到60%LHV的高燃料电转化效率,并在燃料选择方面提供了更大的灵活性。在这项研究中,我们已经开发出一种符号分析方法来研究多级电化学氧化机制中出现的可变参数的可用性,该可变参数有望进一步提高SOFC的电效率。在多级氧化的流动系统中,最下游烟囱Uf_M的燃料利用率Uf表示为烟囱数n和总燃料利用率Uf_T的函数。当n = 10且Uf_T = 85%时,Uf_M计算为36%,比Uf_T小得多。因此,如果最下游的烟囱对稀薄燃料气体具有很高的耐用性,则可以通过使用此流动系统将Uf_T设置为较高的值,而不会造成严重的劣化。

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