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Synergetic Effect of Electric Discharges on Catalytic Methanol Decomposition for High-Efficiency Hydrogen Production

机译:放电对高效产氢催化甲醇分解的协同作用

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This paper describes the synergetic effect of electric discharges on catalytic methanol decomposition for high-efficiency hydrogen production. Inter-electrode material, void fraction in plasma region, and relative location of plasma to catalyst were selected as parameters to reveal the synergetic effect. Basically, the methanol conversion was increased when electric discharge was present on the catalyst. Copper-zinc catalyst showed the maximum conversion of 95.95% under the plasma. The increasing tendency in methanol conversion was different according to inter-electrode material and relative location of plasma to catalyst. The increase of methanol conversion only occurred when the plasma was overlaid on the catalyst. The hydrocarbons and carbon monoxide were detected under the plasma, originally which were not generated when the catalyst was used only.
机译:本文描述了放电对甲醇催化分解的协同作用,以实现高效制氢。选择电极间材料,等离子体区域中的空隙率以及等离子体与催化剂的相对位置作为揭示协同效应的参数。基本上,当催化剂上存在放电时,甲醇转化率增加。铜-锌催化剂在等离子体下显示最大转化率为95.95%。甲醇转化率的增加趋势根据电极间材料和等离子体对催化剂的相对位置的不同而不同。仅当等离子体覆盖在催化剂上时,甲醇转化率才会增加。仅在等离子体下检测到碳氢化合物和一氧化碳,这些碳氢化合物和一氧化碳最初仅在使用催化剂时才产生。

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