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An efficient catalyst COK-15b for the catalytic synthesis of lubricating ester oils 期刊论文
Catalysis Communications, 2019, 期号: 122, 页码: 28-32
Authors:  Wang YN(王亚南);  Ma R(马瑞);  Jiang C(姜程);  Lou WJ(娄文静);  Wang XB(王晓波)
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The effect of impregnation strategy on structural characters and CO2 methanation properties over MgO modified Ni/SiO2 catalysts 期刊论文
Catalysis Communications, 2014, 卷号: 54, 页码: 55-60
Authors:  Guo, Meng;  Lu GX(吕功煊);  Lv GX(吕功煊)
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Methanation  Carbon Dioxide  Supported Catalyst  Modification  Stability  
Enhancement of pyrolysis gasoline hydrogenation over Zn- and Mo-promoted Ni/γ-Al2O3 catalysts 期刊论文
Catalysis Communications, 2011, 卷号: 12, 页码: 851-853
Authors:  Qian Y(钱颖);  Liang SQ(梁顺清);  Wang TH(王庭海);  Wang ZB(王宗保);  Xie W(谢伟);  Xu XL(徐贤伦)
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Pyrolysis Gasoline  Styrene  Hydrogenation  Ni Catalysts  Promoters  
A novel Na2WO4-Mn/SiC monolithic foam catalyst with improved thermal properties for the oxidative coupling of methane 期刊论文
Catalysis Communications, 2008, 卷号: 9, 页码: 1302-1306
Authors:  Liu HT(柳海涛);  Yang DX(杨得信);  Gao RX(高润雄);  Chen L(陈龙);  Zhang SB(张三兵);  Wang XL(王晓来)
Adobe PDF(356Kb)  |  Favorite  |  View/Download:205/1  |  Submit date:2013/06/27
Oxidative Coupling Of Methane  Na2wo4–mn/sic  Monolithic Foam  Thermal Properties  
One-pot synthesis of Ni-nanoparticle-embedded mesoporous titania/silica catalyst and its application for CO2-reforming of methane 期刊论文
Catalysis Communications, 2008, 卷号: 9, 页码: 995-1000
Authors:  Zhang SB(张三兵);  Wang JK(王健康);  Liu HT(柳海涛);  Wang XL(王晓来)
Adobe PDF(371Kb)  |  Favorite  |  View/Download:272/0  |  Submit date:2013/06/27
Ni/tio2–sio2 Catalyst  Sol–gel  Co2-reforming Of Methane  
Low-temperature selective oxidation of methane to ethane and ethylene over BaCO3/La2O3 catalysts prepared by urea combustion method 期刊论文
Catalysis Communications, 2005, 卷号: 7, 页码: 59-63
Authors:  Wang JX(王嘉欣);  Chou LJ(丑凌军);  Zhang B(张兵);  Song HL(宋焕玲);  Yang J(杨建);  Zhao J(赵军);  Li SB(李树本);  Li SB(李树本)
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Low-temperature  Oxidative Coupling Of Methane  Baco3/la2o3 Catalyst  Urea Combustion Method  Hot Spot