Article ID Journal Published Year Pages File Type
1284262 Journal of Power Sources 2014 10 Pages PDF
Abstract

•The performance of SOFC with non-uniform potential operation was evaluated.•Maximum stack temperature gradient and stack temperature were considered.•Non-uniform potential SOFC stacks with a cooler show higher performance.

The performance and the operation viability of solid oxide fuel cells (SOFC) fueled by reformed methane using the concept of non-uniform potential operation were evaluated by one-dimensional finite difference analysis. Two thermal constraints including maximum acceptable stack temperature gradient and maximum stack temperature were the criteria for considering the operation viability. The average power density was used as a performance indicator. In addition, two major process parameters: fuel and air inlet temperatures and the operating voltage were examined to determine the suitable values for different viabilities. The results revealed that non-uniform potential SOFC with two stack sections operating at different voltages could not offer a significantly higher average power density compared with the uniform potential SOFC owing to thermal constraint limitations. The installation of coolers between the stacks is important and it could offer 12.8% improvement in average power density.

Graphical abstractSchematic diagram of non-uniform potential 2-section SOFC stack equipped with cooler, 2-section SOFC-T.Figure optionsDownload full-size imageDownload as PowerPoint slide

Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
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