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Sorption-enhanced hydrogen production by steam reforming of ethanol over mesoporous Co/CaO-Al2O3 xerogel catalysts: Effect of Ca/Al molar ratio

机译:在介孔Co / CaO-Al2O3干凝胶催化剂上通过乙醇蒸汽重整乙醇而产生的吸附增强的氢气:Ca / Al摩尔比的影响

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A series of multifunctional Co/CaO-Al2O3 catalysts (Co/XCA, X = 0, 0.25, 0.5, 0.75, and 1.0) with different Ca/Al molar ratio (X) were prepared for use in the sorption-enhanced hydrogen production by steam reforming of ethanol. Mesoporous structure was successfully formed in all the calcined catalysts, and surface area of the catalysts decreased with increasing Ca/Al molar ratio. Co3O4, CaCO3, and gamma-Al2O3 phases were dominantly formed in the calcined catalysts. It was revealed that addition of Ca neutralized support acidity, resulting in a decrease of C2H4 selectivity. Addition of Ca also increased strong base sites which were related to sorption-enhanced hydrogen production at the initial reaction stage. In the XRD and H-2-TPD analyses, Co/0.5CA catalyst retained the smallest crystallite size of metallic cobalt and the highest cobalt surface area among the catalysts. Catalytic activity in the steam reforming of ethanol exhibited a volcano-shaped trend with respect to Ca/Al molar ratio. Hydrogen yield increased with increasing cobalt surface area. Among the catalysts tested, Co/0.5CA catalyst with the highest cobalt surface area showed the best catalytic performance. Thus, cobalt surface area served as a crucial factor determining the catalytic activity for ethanol steam reforming. Low acidity and high surface area were also responsible for stable catalytic activity of Co/0.5CA catalyst in the steam reforming of ethanol. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:制备了一系列具有不同Ca / Al摩尔比(X)的多功能Co / CaO-Al2O3催化剂(Co / XCA,X = 0,0.25,0.5,0.75和1.0),用于通过以下方法提高吸附氢的产量乙醇的蒸汽重整。在所有煅烧催化剂中均成功形成了介孔结构,且催化剂表面积随Ca / Al摩尔比的增加而减小。在煅烧催化剂中主要形成了Co3O4,CaCO3和γ-Al2O3相。揭示了Ca的添加中和了支持酸度,导致C 2 H 4选择性降低。 Ca的添加还增加了强碱位,这与在初始反应阶段的吸附增强的氢产生有关。在XRD和H-2-TPD分析中,Co / 0.5CA催化剂保留了金属钴中最小的微晶尺寸和最大的钴表面积。相对于Ca / Al摩尔比,乙醇蒸汽重整中的催化活性呈现出火山状的趋势。氢产率随钴表面积的增加而增加。在测试的催化剂中,钴表面积最大的Co / 0.5CA催化剂表现出最佳的催化性能。因此,钴表面积是决定乙醇蒸汽重整的催化活性的关键因素。低酸度和高表面积也负责Co / 0.5CA催化剂在乙醇蒸汽重整中的稳定催化活性。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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