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首页> 外文期刊>International journal of hydrogen energy >Methanol decomposition fuel processor for portable power applications
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Methanol decomposition fuel processor for portable power applications

机译:用于便携式电源应用的甲醇分解燃料处理器

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摘要

A new fuel processor approach for portable fuel cell power sources significantly improves upon microreformers by overcoming the difficulties with heat deficiencies and contaminants in the product hydrogen. Instead of reforming, the processor uses methanol decomposition to enable the byproduct, carbon monoxide (CO), to be used as the heat source. A hydrogen permselective membrane segregates the CO for combustion in an integrated burner, maximizes the decomposition conversion, and provides pure hydrogen for a fuel cell. Discharging the CO-rich retentate through an ejector to draw combustion air into the burner greatly simplifies the system. High and stable hydrogen yields are attained with optimized catalysts and fuel compositions. The resultant simple, efficient, and self-heating processor produces 85% of the hydrogen content of the fuel. A 20 W autonomous power source based on this novel fuel processor demonstrates a fuel energy density >1.5 Wh g_((electrical))~(-1), nearly twice as high as microreformer power sources.
机译:一种用于便携式燃料电池电源的新型燃料处理器方法,通过克服热缺陷和产品氢中污染物的困难,可显着改善微重整炉。处理器没有进行重整,而是利用甲醇分解来使副产物一氧化碳(CO)用作热源。氢选择性渗透膜将CO隔离在集成燃烧器中燃烧,使分解转化率最大化,并为燃料电池提供纯氢。通过喷射器排出富含CO的滞留物,将燃烧空气吸入燃烧器,大大简化了系统。通过优化的催化剂和燃料组成,可以实现高而稳定的氢气产率。由此产生的简单,高效且自加热的处理器可产生燃料中氢含量的85%。基于这种新型燃料处理器的20 W自主电源显示出的燃料能量密度> 1.5 Wh g _((电气))〜(-1),几乎是微改革者电源的两倍。

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