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Production of hydrogen by steam reforming of ethanol over a Ni/ZnO catalyst

机译:在Ni / ZnO催化剂上通过乙醇的水蒸气重整制氢

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In the present work a zinc oxide-supported nickel catalyst was investigated for the steam reforming of ethanol. Comparison was made to the nickel catalysts supported on La_2O_3, MgO and γ-Al_2O_3. Experimental results showed that Ni/ZnO is superior among the catalysts, especially in terms of selectivity and distribution of byproducts. Influential factors, such as reaction temperature, water to ethanol molar ratio, liquid hourly space velocity (LHSV) and Ni loading, were investigated using a Ni/ZnO catalyst. The conversion was always complete at temperatures above 330℃, regardless of the changes in other reaction conditions. However, the selectivity to hydrogen was increased with the increase in temperature, H_2O/EtOH molar ratio and Ni loading. A selectivity of up to 95% was reached under conditions of T = 650℃, LHSV = 5.0 h~(-1), H_2O/EtOH ratio = 8, and Ni loading = 20 wt%. The effect of the influential factors on the side reactions and the distribution of byproducts was also discussed.
机译:在本工作中,研究了氧化锌负载的镍催化剂用于乙醇的蒸汽重整。对负载在La_2O_3,MgO和γ-Al_2O_3上的镍催化剂进行了比较。实验结果表明,Ni / ZnO在催化剂中表现优异,特别是在选择性和副产物分布方面。使用Ni / ZnO催化剂研究了反应温度,水与乙醇的摩尔比,液时空速(LHSV)和Ni含量等影响因素。不论其他反应条件如何变化,转化始终在高于330℃的温度下完成。但是,随着温度,H_2O / EtOH摩尔比和Ni含量的增加,对氢的选择性增加。在T = 650℃,LHSV = 5.0 h〜(-1),H_2O / EtOH比= 8,Ni含量= 20 wt%的条件下,选择性达到95%。还讨论了影响因素对副反应和副产物分布的影响。

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