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Cu基催化剂文献综述和参考文献(4)

时间:2020-05-16 14:56来源:毕业论文
[16] Liu Wei. Total Oxidation of Carbon Monoxide and Methane over Transition Metal Fluorite Oxide Composite Catalysts I. Catalyst Composition and Activity [J]. Journal of Catalysis,1995, 153(2): 304

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[17] Luo Meng-Fei, Zhong Yi-Jun, Yuan Xian-xin, et al. TPR and TPD studies of CuO/CeO2 catalysts for low temperature CO oxidation [J]. Applied Catalysis A: General, 1997, 162(l-2): 121-131.

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[19] Sedmak Gregor, Hočevar Stanko, Levec Janez. Transient kinetic model of CO oxidation over a nanostructured Cu0.1Ce0.9O2−y catalyst [J]. Journal of Catalysis, 2004, 222(1): 87-99.

[20]Gamarra D, Munuera G, Hungría A B, Fernández-García M, et al.  Structure-activity relationship in nanostructured copper-ceria-based preferential CO oxidation catalysts [J]. The Journal of Physical Chemistry C , 2007, 111(29): 11026-11038.

[21] Djinovic´, P.,Batista, J.. Calcination Temperature and CuO loading dependence on CuO-CeO2 Catalyst Activity for water-gas shift reaction [J]. Applied Catalysis A. General , 2008, 347: 23-33.

[22] S.Hocˇevar, J. Batista, J. Levec. Wet Oxidation of Phenol on Ce1−xCuxO2−δ                             Catalyst [J]. Catalyst Composition and Activity , 1999, 184.

[23] Liu Wei, M. Flytzani-Stephanopoulos. Total Oxidation of Carbon-Monoxide and Methane over Transition Metal Fluorite Oxide Composite Catalysts: II  Catalyst Characterization and Reaction-Kinetics[J]. J. Catal. , 1995, 153: 317-332.

[24] Zou Hanbo,Dong Xinfa , Lin Weiming. Selective CO oxidation in hydrogen-rich gasover CuO/CeO2 catalysts [J]. Applied Surface Science,2006, 253 (1): 2893-2898.

[25] George Avgouropoulos, Joan Papavasiliou, Tatyana Tabakova, et al. A comparative study of ceria-supported gold and copper oxide catalysts for preferential CO oxidation reaction [J]. Chemical Engineering Journal, 2006, 104: 41-45.

[26] Li Lei, Zhan Ying-Ying, Chen Chong-Qi, et al. Effect of CeO2 Support Preparaed with Different Methods on the Activity and Stability of CuO/CeO2 Catalysts for the Water-Gas Shift Reaction [J]. Acta Phys.-Chim. Sin., 2009, 25(7): 1397-1404.

[27] A.Gurbani, J.L. Ayastuy, M.P. González-Marcos, et al . Comparative study of CuO–CeO2 catalysts prepared by wet impregnation and deposition–precipitation [J] . International Journal of Hydrogen Energy, 2009, 34(1): 547-553.

[28] D.Gamarra, A.López Cámara, M.Monte, et al. Preferential oxidation of CO in excess H2 over CuO/CeO2 catalysts: Characterization and performance as a function of the expos-ed face present in the CeO2 support [J]. Applied Catalysis B: Environmental, 2013 , 224–238.

[29] Jiang X Y, Zhou R X, Zheng XM, et al. Catalytic Oxidative Properties and Character- ization of CuO/CeO2 Catalysts [J]. Rare Earths, 2003, 21 (1): 55-59.

[30] Jiang X Y, Zhou R X, Zheng X M, et al . Studies of pore structure, temperature- programmed reduction performance, and micro-structure of CuO/CeO2 catalysts [J] . Appl. Surf. Sci , 2001, 173(3-4): 208-220.

[31] Mart nez-Arias A, Conesa J C, Munuera G, et al. Interfacial Redox Processes under CO/O2 in a Nanoceria-Supported Copper Oxide Catalyst.[J]. Phys. Chem. B,  2004, 108 (46): 17983-17991.

[32] Shen Weihua, Dong Xiaoping, Zhu Yufng, et al. Mesoporous CeO2 and CuO-loaded mesoporous CeO2: Synthesis, characterization, and CO catalytic oxidation property [J].Microporous and Mesoporous Materials, 2005, 85(1-2): 157-162.

[33] Gregorio Marban, Antonio B. Fuertes. Highly active and selective CuOx/CeO2 catalyst prepared by a single-step citrate method for preferential oxidation of carbon monoxide [J].  Applied Catalysis B: Environmental, 2005, 57(1): 43-53. Cu基催化剂文献综述和参考文献(4):http://www.youerw.com/wenxian/lunwen_51780.html

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