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纳米二氧化锆在甲醇合成催化剂Cu/Ga2O3/ZrO2中的作用
引用本文:刘欣梅,阎子峰,逯高清.纳米二氧化锆在甲醇合成催化剂Cu/Ga2O3/ZrO2中的作用[J].中国化学,2006,24(2):172-176.
作者姓名:刘欣梅  阎子峰  逯高清
作者单位:[1]State Key Laboratory for Heavy Oil Processing and Key Laboratory of Catalysis, Chinese National Petroleum Corporation, China University of Petroleum, Dongying, Shandong 257061, China [2]Australia Research Council (ARC) Centre of Functional Nanomaterials, University of Queensland, Brisbane 4072, Australia
摘    要:The introduction of mesoporous nanosize zirconia to the catalyst for methanol synthesis dedicates the nanosized catalyst and mesoporous duplicated properties. The catalyst bears the larger surface area, larger mesoporous volume and more uniform diameter, more surface metal atoms and oxygen vacancies than the catalyst prepared with the conventional coprecipitation method. The modification of microstructure and electronic effect could result in the change of the reduced chemical state and decrease of reducuction temperature of copper, donating the higher activity and methanol selectivity to the catalyst. The results of methanol synthesis demonstrate that the Cu^+ is the optimum active site. Also, the interaction between the copper and zirconia shows the synergistic effect to fulfil the methanol synthesis.

关 键 词:氧化锆  钠米颗粒  Cu/Ga2O3/ZrO2催化剂  甲醇  合成  催化性质
收稿时间:2004-06-07
修稿时间:2004-06-072005-10-09

Role of Nanosized Zirconia on the Properties of Cu/Ga2O3/ZrO2 Catalysts for Methanol Synthesis
LIU Xin-Mei, YAN Zi-Feng, LU Gao-Oing Centre of Functional Nanomaterials, University of Queensland, Brisbane , Australia.Role of Nanosized Zirconia on the Properties of Cu/Ga2O3/ZrO2 Catalysts for Methanol Synthesis[J].Chinese Journal of Chemistry,2006,24(2):172-176.
Authors:LIU Xin-Mei  YAN Zi-Feng  LU Gao-Oing Centre of Functional Nanomaterials  University of Queensland  Brisbane  Australia
Institution:1 State Key Laboratory for Heavy Oil Processing and Key Laboratory of Catalysis, Chinese National Petroleum Corporation, China University of Petroleum, Dongying, Shandong 257061, China ;2 Australia Research Council (ARC
Abstract:The introduction of mesoporous nanosize zirconia to the catalyst for methanol synthesis dedicates the nanosized catalyst and mesoporous duplicated properties. The catalyst bears the larger surface area, larger mesoporous volume and more uniform diameter, more surface metal atoms and oxygen vacancies than the catalyst prepared with the conventional coprecipitation method. The modification of microstructure and electronic effect could result in the change of the reduced chemical state and decrease of reducuction temperature of copper, donating the higher activity and methanol selectivity to the catalyst. The results of methanol synthesis demonstrate that the Cu+ is the optimum active site. Also, the interaction between the copper and zirconia shows the synergistic effect to fulfil the methanol synthesis.
Keywords:nanosize zirconia  Cu/Ga2O3/ZrO2  methanol synthesis  catalyst
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