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首页> 外文期刊>International journal of hydrogen energy >Exergy analysis and optimization of methanol generating hydrogen system for PEMFC
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Exergy analysis and optimization of methanol generating hydrogen system for PEMFC

机译:PEMFC制甲醇制氢系统的火用分析与优化

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An exergy analysis of methanol autothermal generating hydrogen system for PEMFC is presented. The process combines a catalytic combustion heat exchanger (CCHE), using partial off-gases containing hydrogen as feedstock, with an auto-thermal reformer (ATR), two water gas shift (WGS) reactors and four preferential oxidation (PROX) reactors. Energy and exergy of system were calculated and analyzed. The results demonstrated that inner exergy losses resulted from the irreversible heat transfer and reaction were the dominant factors. The most important destruction of exergy within the system was found to occur in the reformer and the catalytic combustion heat exchanger. Their ratios of exergy loss accounted for 25.03% and 24.95%, respectively, of the whole system. Based on results of thermodynamic and exergetic analysis, the reformer was optimized. The optimal W/M (molar water to methanol) is around 1.5-2.0 and A/M (molar air to methanol) is around 1.5. Certain recommendations were posed. The conclusions could help to optimize methanol autothermal generating hydrogen system for PEMFC.
机译:提出了PEMFC甲醇自热制氢系统的火用分析。该工艺将使用含氢的部分废气作为原料的催化燃烧热交换器(CCHE)与自动热重整器(ATR),两个水煤气变换(WGS)反应器和四个优先氧化(PROX)反应器相结合。计算和分析了系统的能量和火用。结果表明,不可逆传热和反应引起的内在火用损失是主要因素。发现系统内最主要的火用破坏发生在重整器和催化燃烧热交换器中。它们的火用损失率分别占整个系统的25.03%和24.95%。根据热力学和高能分析的结果,对重整器进行了优化。最佳W / M(水与甲醇的摩尔比)约为1.5-2.0,A / M(空气与甲醇的摩尔比)约为1.5。提出了一些建议。这些结论有助于优化PEMFC的甲醇自热制氢系统。

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