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Effect of molar ratio of water / ethanol on hydrogen selectivity in catalytic production of hydrogen using steam reforming of ethanol

机译:水/乙醇摩尔比对乙醇蒸汽重整制氢催化产氢选择性的影响。

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As fossil energy resources are shrinking, the increase in global energy needs and environmental pollution paved the way to the search for new and renewable energy resources. Therefore, the future of energy technology is being built on the use of hydrogen, which is one of the cleanest and most efficient renewable energy sources, and steam reforming is becoming the utmost method to produce hydrogen. This study focuses on the operation condition of steam reforming of ethanol on catalyst materials, which were shaped using active metals such as Ni, Cu and Cs and supporting materials which were activated by carbon and LiAlO2. These catalyst materials were tested to produce hydrogen gas using different water/ethanol mole ratio at different temperatures and a constant feed flow rate. The evaluation regarding hydrogen selectivity results and the percentage of hydrogen in the products revealed that Ni-Cu-Cs/LiAlO2 catalyst showed the highest performance at all water/ethanol ratios and temperatures between 300 and 600 degrees C. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:随着化石能源资源的减少,全球能源需求的增加和环境污染为​​寻找新的可再生能源铺平了道路。因此,能源技术的未来将建立在氢的使用上,氢是最清洁,最有效的可再生能源之一,而蒸汽重整正成为生产氢的最大方法。这项研究的重点是乙醇在催化剂材料上进行水蒸气重整的操作条件,催化剂材料是使用活性金属(例如Ni,Cu和Cs)以及由碳和LiAlO2活化的载体材料成型的。使用不同的水/乙醇摩尔比在不同的温度和恒定的进料流速下测试了这些催化剂材料以产生氢气。关于氢选择性结果和产物中氢百分比的评估表明,Ni-Cu-Cs / LiAlO2催化剂在所有水/乙醇比和300至600摄氏度之间的温度下均表现出最高性能。(C)2018氢能出版物有限责任公司由Elsevier Ltd.出版。保留所有权利。

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