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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Structure-activity relationships of Co-modified Cu/ZnO/Al2O3 catalysts applied in the synthesis of higher alcohols from synthesis gas
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Structure-activity relationships of Co-modified Cu/ZnO/Al2O3 catalysts applied in the synthesis of higher alcohols from synthesis gas

机译:Co-修饰的Cu / ZnO / Al2O3催化剂的构效关系在合成气合成高级醇中的应用

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Cu-Co-based catalysts were synthesized by co-precipitation using Cu, Co, Zn and Al nitrates and applied in higher alcohol synthesis (HAS) at 280 degrees C, 60 bar and a ratio of H-2/CO = 1. The catalyst exhibiting a Cu/Co ratio of 2.5 was found to provide the best trade-off between product distribution and degree of CO conversion. After activation and 40 h time on stream reaching steady-state conditions the bulk and surface properties of the catalyst were thoroughly investigated without exposing it to air during the transfer and the measurements. The conditions during activation and HAS led to a significant enrichment of Zn in the surface composition of the catalysts. The XRD pattern of the catalyst after reaction compared with the reduced catalyst revealed further sintering of the metallic Cu nanoparticles and the growth of crystalline ZnO nanoparticles, but there were no indications for the presence of bulk metallic Co or for bulk alloying. With increasing time on stream the product distribution shifted favorably towards higher alcohols presumably due to an increased intimate interface contact between the large metallic Cu particles detected by XRD and the X-ray amorphous metallic Co surface species probed by XPS. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过使用Cu,Co,Zn和Al硝酸盐共沉淀法合成Cu-Co基催化剂,并在280摄氏度,60 bar和H-2 / CO = 1的条件下应用于高级醇合成(HAS)。发现具有2.5的Cu / Co比的催化剂在产物分布和CO转化度之间提供了最佳折衷。活化后和在运行40小时后达到稳态条件,对催化剂的体积和表面性质进行了彻底研究,而在转移和测量期间未将其暴露于空气中。活化和HAS过程中的条件导致催化剂表面成分中锌大量富集。与还原的催化剂相比,反应后的催化剂的XRD图谱显示金属Cu纳米颗粒的进一步烧结和结晶ZnO纳米颗粒的生长,但是没有迹象表明存在大量金属Co或存在大量合金化。随着运行时间的增加,推测是由于XRD检测到的大金属Cu粒子与XPS检测到的X射线无定形金属Co表面物种之间紧密的界面接触,产物分布朝着高级醇方向转移。 (C)2015 Elsevier B.V.保留所有权利。

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