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负载型铜基催化剂因其良好的催化性能和相对低廉的价格在诸多重要工业催化反应中得到广泛的应用.探讨负载型铜基催化剂中组分间的相互作用,有助于了解相关催化作用的本质,为现有催化剂的改进和新催化剂的设计提供科学依据.本文综述了近年来我们就CuO在不同载体上的分散、铜物种和载体的改性及其物理化学性质以及催化CO完全氧化、CO+NO和NH3+NO+O2反应性能等方面的研究进展.结果表明,CuO在多种氧化物载体表面的分散和所得负载型铜基催化剂的一些物理化学性质可参考“嵌入模型”得到解释,本文主要讨论了以CeO2,CexZr1-xO2和MoO3-CeO2为载体的一些铜基催化剂的组成-结构-性质间的关系.

参考文献

[1] Jones S D;Hagelin-Weaver H E .[J].Applied Catalysis B:Environmental,2009,90:195.
[2] Jobbágy M;Marino F;Sch(o)nbrod B;Baronetti G Laborde M .[J].CHEMISTRY OF MATERIALS,2006,18:1945.
[3] 郭胜辉,陈霄榕.CuO-NiO/Al2O3催化剂上N-甲基哌嗪合成研究[J].河北工业大学学报,2009(03):24-28.
[4] Hu C Q;Zhu Q S;Jiang Z;Zhang Y Y Wang Y .[J].Microporous and Mesoporous Materials,2008,113:427.
[5] Li Y;Fu Q;Flytzani-Stephanopoulos M .[J].Applied Catalysis B:Environmental,2000,27:179.
[6] Brands D S;Poels E K;BliekA .[J].Applied Catalysis A:General,1999,184:279.
[7] Bera P.;Priolkar KR.;Sarode PR.;Hegde MS.;Emura S.;Kumashiro R. Lalla NP. .Structural investigation of combustion synthesized Cu/CeO2 catalysts by EXAFS and other physical techniques: Formation of a Ce1-xCuxO2-delta solid solution[J].Chemistry of Materials,2002(8):3591-3601.
[8] Qi L;Yu Q;Dai Y;Tang C J Liu L J Zhang H L Gao F Dong L Chen Y .[J].Applied Catalysis B:Environmental,2012,119-120:308.
[9] Selwood PW .[J].ADVANCES IN CATALYSIS,1951,3:27.
[10] Tauster S J;Fung S C;Garten R L .[J].Journal of the American Chemical Society,1978,100:170.
[11] Lund C R F;Dumesic J A .[J].Journal of Physical Chemistry,1981,85:3175.
[12] Olthof B;Khodakov A;Bell A T;Iglesia E .[J].Journal of Physical Chemistry B,2000,104:1516.
[13] Xie S B;Iglesia E;Bell A T .[J].Journal of Physical Chemistry B,2001,105:5144.
[14] Xie SB.;Bell AT.;Iglesia E. .Effects of hydration and dehydration on the structure of silica-supported vanadia species[J].Langmuir: The ACS Journal of Surfaces and Colloids,2000(18):7162-7167.
[15] Cheung P;Liu H C;Iglesia E .[J].Journal of Physical Chemistry B,2004,108:18650.
[16] Dai H X;Bell A T;Iglesia E .[J].Journal of Catalysis,2004,221:491.
[17] Wachs I E .[J].Catalysis Today,1996,27:437.
[18] Hardcastle F D;Wachs I E;Horsley J A;Via G H .[J].Journal of Molecular Catalysis,1988,46:15.
[19] Wang X;Wachs I E .[J].Catalysis Today,2004,96:211.
[20] Tian H J;Wachs I E;Briand L E .[J].Journal of Physical Chemistry B,2005,109:23491.
[21] Kn(o)zinger H;Taglauer E;Spivey J J;Agarwal S K.Catalysis.Vol.10[M].Cambridge:The Royal Society of Chemistry,1993:1.
[22] Coluccia S;Marchese L .[J].Catalysis Today,1998,41:229.
[23] Reddy B M;Sreekanth P M;Yamada Y;Xu Q Kobayashi T .[J].Applied Catalysis A:General,2002,228:269.
[24] Reddy B M;Chowdhury B;Smirniotis P G .[J].Applied Catalysis A:General,2001,211:19.
[25] Reddy BM.;Chowdhury B. .Dispersion and thermal stability of MoO3 on TiO2-ZrO2 mixed oxide support[J].Journal of Catalysis,1998(2):413-419.
[26] Xie Y C;Tang Y Q .[J].ADVANCES IN CATALYSIS,1990,37:1.
[27] 颜建华;刘英骏;桂琳琳;唐有祺 .[J].物理化学学报,1993,9:13.
[28] 罗胜成;桂琳琳;唐有祺 .[J].物理化学学报,1996,12:341.
[29] 傅贤智;罗胜成;桂琳琳;罗锡辉 .[J].化学学报,1992,50:342.
[30] 傅贤智;罗胜成;桂琳琳;唐有祺 .[J].自然科学进展,1991,1:543.
[31] Goodman DW. .Model catalysts: from imagining to imaging a working surface[J].Journal of Catalysis,2003(1/2):213-222.
[32] Hess C;Ozensoy E;Goodman D W .[J].Journal of Physical Chemistry B,2003,107:2759.
[33] Xu C;Oh W S;Goodman D W .[J].Journal of Physical Chemistry B,2000,104:10310.
[34] Chen MS;Goodman DW .The structure of catalytically active gold on titania[J].Science,2004(5694):252-255.
[35] Chen Y;Dong L;Jin Y 5;Xu B Ji W J .[J].Studies in surface science and catalysis,1996,101:1293.
[36] Chen Y;Zhang L F .[J].Catalysis Letters,1992,12:51.
[37] 余强,高飞,董林.铜基催化剂用于一氧化碳催化消除研究进展[J].催化学报,2012(08):1245-1256.
[38] Trovarelli A .[J].CatalRev-SciEng,1996,38:439.
[39] Ka(s)par J;Fornasiero P;Graziani M .[J].Catalysis Today,1999,50:285.
[40] 董林;金永漱;陈懿 .[J].中国科学(B辑,1996,26:561.
[41] Li, D.;Yu, Q.;Li, S.-S.;Wan, H.-Q.;Liu, L.-J.;Qi, L.;Liu, B.;Gao, F.;Dong, L.;Chen, Y. .The remarkable enhancement of CO-pretreated CuO??Mn _2O_3/γ-Al_2O_3 supported catalyst for the reduction of NO with CO: The formation of surface synergetic oxygen vacancy[J].Chemistry: A European journal,2011(20):5668-5679.
[42] Ka(S)par J;Fornasiero P;Hickey N .[J].Catalysis Today,2003,77:419.
[43] Wang S P;Zheng X C;Wang X Y;Wang S R Zhang S M Yu L H Huang W P Wu S H .[J].Catalysis Letters,2005,105:163.
[44] Oguchi H;Kanai H;Utani K;Matsumura Y Imamura S .[J].Applied Catalysis A:General,2005,293:64.
[45] Liotta L F;Macaluso A;Longo A;Pantaleo G Martorana A Deganello G .[J].Applied Catalysis A:General,2003,240:295.
[46] Kakuta N;Ikawa S;Eguchi T;Murakami K Ohkita H Mizushima T .[J].Journal of Alloys and Compounds,2006,408-412:1078.
[47] Larese C;Granados ML;Mariscal R;Fierro JLG;Lambrou PS;Efstathiou AM .The effect of calcination temperature on the oxygen storage and release properties of CeO2 and Ce-Zr-O metal oxides modified by phosphorus incorporation[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,2005(1/2):13-25.
[48] Ayastuy J L;Gurbani A;González-Marcos M P;Gutiérrez-Ortiz M A .[J].International Journal of Hydrogen Energy,2012,37:1993.
[49] Chen H L;Zhu H Y;Wu Y;Gao F Dong L Zhu J J .[J].Journal of Molecular Catalysis A:Chemical,2006,255:254.
[50] Liu L J;Liu B;Dong L H;Zhu J Wan H Q Sun K Q Zhao B Zhu H Y Dong L Chen Y .[J].Applied Catalysis B:Environmental,2009,90:578.
[51] Mohamed MM;Katib SMA .Structural and catalytic characteristics Of MoO3/CeO2 catalysts: CO oxidation activity[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2005(2):236-243.
[52] Huang H;Guo Z C .[J].Journal of Inorganic Materials,2012,27:939.
[53] Rathod S B;Lande M K;Arbad B R .[J].Bulletin of the Korean Chemical Society,2010,31:2835.
[54] Zhu J;Gao F;Dong L H;Yu W J Qi L Wang Z Dong L Chen Y .[J].Applied Catalysis B:Environmental,2010,95:144.
[55] Yu W J;Zhu J;Qi L;Sun C Z Gao F Dong L Chen Y .[J].Journal of Colloid and Interface Science,2011,364:435.
[56] Liu L J;Yu Q;Zhu J;Wan H Q Sun K Q Liu B Zhu H Y Gao F Dong L Chen L .[J].Journal of Colloid and Interface Science,2010,349:246.
[57] Liu L J;Chen Y;Dong L H;Zhu J Wan H Q Liu B Zhao B Zhu H Y Sun K Q Dong L Chen Y .[J].Applied Catalysis B:Environmental,2009,90:105.
[58] Li X W;Wan H Q;Liu B;Yang L J Zhu H Y Chen H L Zhao X Sun K Q Dong L Chen Y .[J].CATALYSIS COMMUNICATIONS,2009,10:741.
[59] Li X W;Shen M M;Hong X;Zhu H Y Gao F Kong Y Dong L Chen Y .[J].Journal of Physical Chemistry B,2005,109:3949.
[60] Dong L H;Liu L J;Lv Y Y;Zhu J Wan H Q Liu B Gao F Wang X S Dong L Chen Y .[J].Journal of Molecular Catalysis A:Chemical,2012,365:87.
[61] Dang L H;Zhang L L;Sun C Z;Yu W J Zhu J Liu L J Liu B Hu Y H Gao F Dang L Chen Y .[J].ACS Catal,2011,1:468.
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