固体氧化物燃料电池
汽化器
火用
部分氧化
核工程
燃烧室
燃料电池
可用能
丁烷
材料科学
废物管理
化学
工艺工程
化学工程
阳极
燃烧
工程类
电极
甲烷
有机化学
物理化学
生物化学
催化作用
作者
Nico Hotz,Stephan M. Senn,Dimos Poulikakos
标识
DOI:10.1016/j.jpowsour.2005.09.023
摘要
In this paper, an analytical model of a micro solid oxide fuel cell (SOFC) system fed by butane is introduced and analyzed in order to optimize its exergetic efficiency. The micro SOFC system is equipped with a partial oxidation (POX) reformer, a vaporizer, two pre-heaters, and a post-combustor. A one-dimensional (1D) polarization model of the SOFC is used to examine the effects of concentration overpotentials, activation overpotentials, and ohmic resistances on cell performance. This 1D polarization model is extended in this study to a two-dimensional (2D) fuel cell model considering convective mass and heat transport along the fuel cell channel and from the fuel cell to the environment. The influence of significant operational parameters on the exergetic efficiency of the micro SOFC system is discussed. The present study shows the importance of an exergy analysis of the fuel cell as part of an entire thermodynamic system (transportable micropowerplant) generating electric power.
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