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首页> 外文期刊>International Journal of Greenhouse Gas Control >Carbon capture with molten carbonate fuel cells: Experimental tests and fuel cell performance assessment
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Carbon capture with molten carbonate fuel cells: Experimental tests and fuel cell performance assessment

机译:熔融碳酸盐燃料电池的碳捕获:实验测试和燃料电池性能评估

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摘要

Molten carbonate fuel cells (MCFCs) may operate as CO2 separators and concentrators while generating electric power, being thus a very interesting candidate to be used as carbon capture systems in fossil fired power plants. The main aim of this work is to understand the MCFC performance, its potential and efficiency to separate CO2 from the exhaust gas of fossil fired power plants and the effect of critical parameters such as the cathodic carbon dioxide concentration (X-CO2) and utilization (U-CO2), as well as the partial pressure ratio between oxygen and carbon dioxide (P-O2/P-CO2) and other parameters such as the oxygen concentration (X-O2), utilization (U-O2) and the total cathodic flow rate (Q(cat)). This was achieved by studying the experimental behaviour of a single MCFC when it is fed with a mixture simulating the composition of the exhaust gases of a combined heat and power plant, in order to point out potential limitations in the fuel cell operating conditions. In particular, the carbon dioxide concentration in the cathodic section was shown to be a critical factor at low values, that can both induce quick voltage drops and make the cell sensitive to the other parameters, which are otherwise not so important
机译:熔融碳酸盐燃料电池(MCFC)可以在发电时用作CO2分离器和浓缩器,因此是化石燃料发电厂中用作碳捕获系统的非常有趣的候选者。这项工作的主要目的是了解MCFC的性能,将化石燃料发电厂的废气中的CO2分离出来的潜力和效率,以及诸如阴极二氧化碳浓度(X-CO2)和利用率( U-CO2)以及氧气与二氧化碳之间的分压比(P-O2 / P-CO2)和其他参数,例如氧气浓度(X-O2),利用率(U-O2)和总阴极流量(Q(cat))。这是通过研究将单个MCFC注入模拟热电厂联合排放气体成分的混合物时的实验行为来实现的,以指出燃料电池运行条件的潜在局限性。特别是,阴极区的二氧化碳浓度在低值时是一个关键因素,既可以引起电压快速下降,也可以使电池对其他参数敏感,否则这些参数就不那么重要了。

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