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Cycle analysis of planar SOFC power generation with serial connection of low and high temperature SOFCs

机译:低温和高温SOFC串联连接的平面SOFC发电的周期分析

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Solid oxide fuel cells (SOFCs) can be composed of solid components for stable operation, and high power generation efficiency is obtained by using high temperature exhaust heat for fuel reforming and bottoming power generation by a gas turbine. Recently, low-temperature SOFCs, which run in the temperature range of around 600 deg C or above and give high power generation efficiency, have been developed. On the other hand, a power generation system with multi-staged fuel cells has been proposed by the United States DOE to obtain high efficiency. In our present study, a power generation system consisting of two-staged SOFCs with serial connection of low and high temperature SOFCs was investigated. Overpotential data for the low-temperature SOFC used in this study are based on recently published data, while data for high-temperature SOFC are based on our previous study. The numerical results show that the power generation efficiency of the two-staged SOFCs is 50.3 percent and the total efficiency of power generation with gas turbine is 56.1 percent under standard operating conditions. These efficiencies are a little higher than those by high-temperature SOFC only.
机译:固态氧化物燃料电池(SOFC)可以由稳定运行的固态成分组成,并且通过将高温废热用于燃气轮机进行的燃料重整和最低发电,可以获得高发电效率。近来,已经开发了低温SOFC,其在约600℃或更高的温度范围内运行并提供高发电效率。另一方面,美国能源部已经提出了具有多级燃料电池的发电系统以获得高效率。在本研究中,研究了由两级SOFC组成的发电系统,该系统具有低温和高温SOFC的串联连接。本研究中使用的低温SOFC的超电势数据基于最近发表的数据,而高温SOFC的数据则基于我们先前的研究。数值结果表明,在标准运行条件下,两级SOFC的发电效率为50.3%,燃气轮机的发电总效率为56.1%。这些效率比仅高温SOFC的效率略高。

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