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Enhanced catalytic activities and selectivities in preferential oxidation of CO over ceria-promoted Au/Al_2O_3 catalysts

氧化铈促进的高效Au/Al_2O_3催化剂制备及其催化CO选择氧化反应性能(英文)

作     者:苗雨欣 王静 李文翠 Yu-Xin Miao;Jing Wang;Wen-Cui Li

作者机构:大连理工大学化工学院精细化工国家重点实验室辽宁大连116024 

出 版 物:《Chinese Journal of Catalysis》 (催化学报(英文))

年 卷 期:2016年第37卷第10期

页      面:1721-1728页

核心收录:

学科分类:081705[工学-工业催化] 0817[工学-化学工程与技术] 08[工学] 0703[理学-化学] 

基  金:supported by the National Basic Research Program of China (973 Program, 2013CB934104) the National Natural Science Founda-tion of China (21225312, U1303192)~~ 

主  题:Gold catalysis Ceria Alumina Preferential oxidation of carbon monoxide Deposition-precipitation 

摘      要:The preferential oxidation of CO (CO‐PROX) is a hot topic because of its importance in pro‐ton‐exchange membrane fuel cells (PEMFCs). Au catalysts are highly active in CO oxidation. Howev‐er, their activities still need to be improved at the PEMFC operating temperatures of 80–120 °C. In the present study, Au nanoparticles of average size 2.6 nm supported on ceria‐modified Al2O3 were synthesized and characterized using powder X‐ray diffraction, nitrogen physisorption, transmission electron and scanning transmission electron microscopies, temperature‐programmed hydrogen reduction (H2‐TPR), Raman spectroscopy, and in situ diffuse‐reflectance infrared Fourier‐transform spectroscopy. Highly dispersed Au nanoparticles and strong structures formed by Au–support in‐teractions were the main active species on the ceria surface. The Raman and H2‐TPR results show that the improved catalytic performance of the Au catalysts can be attributed to enhanced strong metal–support interactions and the reducibility caused by ceria doping. The formation of oxygen vacancies on the catalysts increased their activities in CO‐PROX. The synthesized Au catalysts gave excellent catalytic performances with high CO conversions (>97%) and CO2 selectivities (>50%) in the temperature range 80–150 °C.

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