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用于甲醇合成的高活性铜/氧化锌-铝催化剂:老化对其结构和活性的影响

Highly active Cu/ZnO-Al catalyst for methanol synthesis: effect of aging on its structure and activity.

作者信息

Mota N, Guil-Lopez R, Pawelec B G, Fierro J L G, Navarro R M

机构信息

Instituto de Catálisis y Petroleoquímica-CSIC, Calle de Marie Curie 2, Cantoblanco 28049 Madrid Spain

出版信息

RSC Adv. 2018 Jun 5;8(37):20619-20629. doi: 10.1039/c8ra03291b.

Abstract

The influence of aging of precipitates on the physical and catalytic properties of a copper/zinc oxide-aluminium (Cu/ZnO-Al) catalyst with an optimized composition (low Al concentration, Cu/Zn/Al = 68/29/3) prepared using co-precipitation has been investigated in detail. The change in the structure of precipitates with aging (from amorphous zincian georgeite to crystalline zincian malachite) strongly influences the micro- and nano-structure (Cu and ZnO crystallite size, exposed copper surface area, Cu-ZnO interactions and stability of ZnO) of the final Cu/ZnO-Al catalysts obtained after calcination and reduction of the precipitates. The results of catalytic activity in methanol synthesis from syngas show the higher intrinsic activity of the catalysts derived from aged zincian malachite precipitates as consequence of the increase in the exposed copper surface area and the Cu-ZnO contacts. The stability of catalysts under the reaction conditions was also improved in the catalysts derived from precipitates aged after crystallization of malachite. The catalyst derived from the precipitate removed close to the point of crystallization of malachite shows very poor activity in the methanol synthesis as consequence of its segregated large Cu crystallites in low contact with ZnO derived from the absence of carbonate retention after calcination of the precipitate and the presence of sodium species after conventional washing which favour the strong sintering and crystallization of Cu during reduction.

摘要

详细研究了沉淀物老化对采用共沉淀法制备的具有优化组成(低铝浓度,铜/锌/铝 = 68/29/3)的铜/氧化锌 - 铝(Cu/ZnO - Al)催化剂的物理和催化性能的影响。随着老化,沉淀物结构的变化(从无定形锌羟铜矿变为结晶锌孔雀石)强烈影响了沉淀物经过煅烧和还原后最终得到的Cu/ZnO - Al催化剂的微观和纳米结构(铜和氧化锌微晶尺寸、暴露的铜表面积、Cu - ZnO相互作用以及氧化锌的稳定性)。合成气制甲醇的催化活性结果表明,由于暴露的铜表面积和Cu - ZnO接触增加,源自老化锌孔雀石沉淀物的催化剂具有更高的本征活性。在孔雀石结晶后老化的沉淀物所衍生的催化剂中,催化剂在反应条件下的稳定性也得到了提高。源自接近孔雀石结晶点时去除的沉淀物的催化剂在甲醇合成中表现出非常低的活性,这是由于其在煅烧沉淀物后缺乏碳酸盐保留以及常规洗涤后存在钠物种,导致铜微晶在还原过程中大量偏析且与氧化锌接触较少,从而有利于铜的强烈烧结和结晶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eeb/9080870/8dc2f794d239/c8ra03291b-f1.jpg

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