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首页> 外文期刊>Renewable energy >The role of copper oxidation state in Cu/ZnO/Al_2O_3 catalysts in CO_2 hydrogenation and methanol productivity
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The role of copper oxidation state in Cu/ZnO/Al_2O_3 catalysts in CO_2 hydrogenation and methanol productivity

机译:Cu / ZnO / Al_2O_3催化剂中铜的氧化态在CO_2加氢和甲醇产率中的作用

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摘要

CO2 hydrogenation was carried out over a series of Cu/ZnO/Al2O3 catalysts, which were prepared by different synthesis methods (co-precipitation, ultrasound-assisted, sol-gel and solid-state). The applicative physicochemical properties of the materials and their catalytic performance were investigated. Subsequently, the preparation methodology influence on the average Cu particle size, the interactions of metals, the exposed copper phases surface area and the ratio of Cu-0/Cu+, as well as its specific effect on reactions, were assessed in detail. The ultrasonic synthetic route provided increased basic active sites' number and significant methanol selectivity, compared to the conventional precipitation procedure, while it also improved the dispersion of separate Cu metallic particles, which ultimately changed the intrinsic reactive activity of CuO-ZnO. The trend of apparent CH3OH productivity rate was consistent with the Cu+/Cu-0 ratio or content as well. The presence of Cu+ species at high concentration levels is thus crucial for high methanol selectivity and an extremely low selectivity towards CO at the conventional industrial operating conditions analysed. The dependence of the selective methanol production on the fraction of determined alkaline moieties was found analogous to all catalysts studied. Cu+/Cu-0 oxidation state role and distribution may, therefore, aid in CO2 conversion catalyst design and optimisation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在一系列通过不同合成方法(共沉淀,超声辅助,溶胶-凝胶和固态)制备的Cu / ZnO / Al2O3催化剂上进行了CO2加氢反应。研究了该材料的应用理化性质及其催化性能。随后,详细评估了制备方法对平均Cu粒径,金属相互作用,暴露的铜相表面积和Cu-0 / Cu +的比例及其对反应的特殊影响的影响。与传统的沉淀程序相比,超声合成路线提供了更多的碱性活性位点数量和显着的甲醇选择性,同时还改善了单独的Cu金属颗粒的分散性,最终改变了CuO-ZnO的固有反应活性。表观CH 3 OH生产率的趋势也与Cu + / Cu-0比率或含量一致。因此,在分析的常规工业操作条件下,高浓度水平下Cu +的存在对于高甲醇选择性和极低的CO选择性至关重要。发现类似于所有研究的催化剂,发现选择性甲醇生产对所确定的碱性部分的分数的依赖性。因此,Cu + / Cu-0氧化态的作用和分布可能有助于CO2转化催化剂的设计和优化。 (C)2019 Elsevier Ltd.保留所有权利。

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