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The proton exchange membrane fuel cell systems using methanolysis of sodium borohydride as a hydrogen source with cobalt catalysts

机译:使用硼氢化钠的甲醇分解作为氢源和钴催化剂的质子交换膜燃料电池系统

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Constant hydrogen generation via a hydrogen generator is evaluated from the methanolysis of sodium borohydride (NaBH4) using Co/Al2O3 and MnOx/Al2O3 catalysts. Chemical borohydrides coupled with catalysts can be used for compact storage and to create efficient generation systems. Thus, we first report the catalytic activity of MnOx/Al2O3, which is synthesized using the simple wet-impregnation method, for the methanolysis reaction. The results indicate that both catalysts can effectively accelerate the methanolysis reaction and provide constant hydrogen generation rates. Thus, we integrate this hydrogen generation system into a proton exchange membrane fuel cell stack (PEMFC) to determine whether it can be used as a portable power supply. As a result, this fuel cell system operates at 40 W for 1 hr using the hydrogen source supplied from the catalytic methanolysis reaction.
机译:使用Co / Al2O3和MnOx / Al2O3催化剂通过硼氢化钠(NaBH4)的甲醇分解来评估通过氢发生器产生的恒定氢。化学硼氢化物与催化剂结合可用于紧凑存储并创建高效的发电系统。因此,我们首先报道了使用简单的湿法浸渍法合成的MnOx / Al2O3对甲醇分解反应的催化活性。结果表明,两种催化剂均可有效地促进甲醇分解反应并提供恒定的氢生成速率。因此,我们将该制氢系统集成到质子交换膜燃料电池堆(PEMFC)中,以确定它是否可以用作便携式电源。结果,该燃料电池系统使用由催化甲醇分解反应提供的氢源在40 W下运转1个小时。

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