Cu/ZnO/Al2O3Catalyst Modulated by Zirconia with Enhanced Performance in CO2Hydrogenation to Methanol

被引:0
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作者
Li, Hangjie [1 ]
Wang, Liang [2 ]
Gao, Xinhua [3 ]
Xiao, Feng-Shou [2 ]
机构
[1] Department of Chemistry, Zhejiang University, Hangzhou,310028, China
[2] Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou,310027, China
[3] State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering, School of Chemistry and Chemical Engineering, Ningxia University, Yinchuan,750021, China
来源
基金
中国国家自然科学基金;
关键词
CO2 hydrogenation - Cu dispersion - Cu/ZnO/Al2O3 catalysts - Methanol selectivity - Performance - Spacetime - Structural characterization - Surface area - Wide temperature ranges - ]+ catalyst;
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学科分类号
摘要
A Cu/ZnO/Al2O3catalyst has been extensively studied in CO2hydrogenation to methanol, where the methanol selectivity usually decreases with increasing CO2conversion because of the thermodynamically oriented CO production. Herein, we found that the CO2conversion and methanol selectivity over the Cu/ZnO/Al2O3catalyst could be simultaneously improved through zirconia modulation (CZAZ). The structural characterizations show that the zirconia efficiently increases both the surface area and Cu dispersion on the catalyst. In the CO2-to-methanol transformation, it is found that the zirconia could significantly hinder the decomposition of the CH3O∗ intermediate to benefit its hydrogenation to methanol, a crucial step in this transformation. These features simultaneously optimized the CO2conversion and methanol selectivity, giving methanol space-time productivity at 1376 gMeOH/(kgcat·h). In addition, the CZAZ catalyst was durable in a continuous test for 200 h over a wide temperature range of 200-250 °C, which is important for its potential application. © 2022 American Chemical Society. All rights reserved.
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页码:10446 / 10454
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