采用浸渍法制备了介孔氧化铝(m-Al2O3)负载钒催化剂(V/m-Al2O3),并考察了其催化丙烷氧化脱氢制丙烯反应活性.通过N2吸附-脱附、透射电镜、X射线粉末衍射、紫外-可见漫反射光谱、氢-程序升温还原和氨-程序升温脱附对催化剂进行了表征.结果表明,介孔氧化铝具有大比表面积、窄孔径分布和两维六方相结构,在其上负载适量的V可实现V活性物种的高分散及催化剂的弱酸性,从而有利于提高丙烷转化率和丙烯选择性.与共合成法制备的含V介孔氧化铝V/m-Al2O3(C)和浸渍法制备的V/γ-Al2O3相比,V/m-Al2O3表现出更高的催化活性.这与载体较弱的酸性和较大的比表面积以及V物种的高分散有关.
参考文献
[1] | 余长林,葛庆杰,徐恒泳,李文钊.丙烷脱氢制丙烯研究新进展[J].化工进展,2006(09):977-982. |
[2] | Cavani F;Ballarini N;Cericola A .[J].Catalysis Today,2007,127:113. |
[3] | 缪建文,宋国华,范以宁.不同孔道结构的氧化硅负载钒氧化物催化丙烷氧化脱氢[J].催化学报,2009(11):1143-1149. |
[4] | Blasco T;López Nieto J M .[J].Applied Catalysis A:General,1997,157:117. |
[5] | Liu Y M;Cao Y;Yan S R;Dai W L Fan K N .[J].Catalysis Letters,2003,88:61. |
[6] | Banares M A .[J].Catalysis Today,1999,51:319. |
[7] | 计宝峰,汪纪波,楚文玲,朱雪峰,杨维慎,林励吾.丙烷氧化脱氢反应中Mg2V2O7催化剂氧活度的原位监测[J].催化学报,2009(05):375-377. |
[8] | Yuan Q;Yin AX;Luo C;Sun LD;Zhang YW;Duan WT;Liu HC;Yan CH .Facile synthesis for ordered mesoporous gamma-aluminas with high thermal stability[J].Journal of the American Chemical Society,2008(11):3465-3472. |
[9] | Morris SM;Fulvio PF;Jaroniec M .Ordered Mesoporous Alumina-Supported Metal Oxides[J].Journal of the American Chemical Society,2008(45):15210-15216. |
[10] | Concepción P;Navarro M T;Blasco T;López Nieto J M Panzacchi B Rey F .[J].Catalysis Today,2004,96:179. |
[11] | Solsona B;Dejoz A;Garcia T;Concepción P Lopez Nieto J M Vázquez M I Navarro M T .[J].Catalysis Today,2006,117:228. |
[12] | Wang Z Z;Tian X K;Yang C;Zhao Y X Pi Z B .[J].Journal of Nanoscience and Nanotechnology,2009,9:6876. |
[13] | Liu Y M;Cao Y;Yi N;Feng W L Dai W L Yan S R He H Y Fan K N .[J].Journal of Catalysis,2004,224:417. |
[14] | Shylesh S;Singh AP .Synthesis, characterization, and catalytic activity of vanadium-incorporated, -grafted, and -immobilized mesoporous MCM-41 in the oxidation,of aromatics[J].Journal of Catalysis,2004(2):333-346. |
[15] | Bautista F M;Campelo J M;Luna D;Luque J Marinas J M .[J].Applied Catalysis A:General,2007,325:336. |
[16] | Shiju N R;Anilkumar M;Mirajkar S P;Gopinath C S Rao B S Satyanarayana C V .[J].Journal of Catalysis,2005,230:484. |
[17] | Martinez-Huerta M V;Gao X;Tian H;Wachs I E Fierro J L G Ba(n)ares M A .[J].Catalysis Today,2006,118:279. |
[18] | Du G A;Lim S Y;Pinault M;Wang C Fang F Pfefferle L Haller G L .[J].Journal of Catalysis,2008,253:74. |
[19] | Volpe M;Tonetto G;de Lasa H .[J].Applied Catalysis A:General,2004,272:69. |
[20] | Chary K V R;Kumar C P;Rao P V R;Rao V V .[J].Catalysis Communications,2004,5:479. |
[21] | Zhang Q H;Wang Y;Ohishi Y;Shishido T Takehira K .[J].Journal of Catalysis,2001,202:308. |
[22] | Mars P;van Krevelen D W .[J].Chemical Engineering Science,1954,3:41. |
[23] | Chen K D;Bell A T;Iglesia E .[J].Journal of Physical Chemistry B,2000,104:1292. |
[24] | Lemonidou A.A. .Oxidative dehydrogenation of propane over vanadium oxide based catalysts Effect of support and alkali promoter[J].Catalysis Today,2000(1/4):333-341. |
[25] | Mamedov EA.;Corberan VC. .OXIDATIVE DEHYDROGENATION OF LOWER ALKANES ON VANADIUM OXIDE-BASED CATALYSTS - THE PRESENT STATE OF THE ART AND OUTLOOKS [Review][J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,1995(1/2):1-40. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%