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催化学报  2011 

高载量、高活性Ni/Al2O3催化剂的制备及其芳环加氢催化反应研究

DOI: 10.1016/S1872-2067(10)60224-0, PP. 917-925

Keywords: ,氧化铝,正丁醇干燥,活性金属表面积,微量吸附量热,甲苯加氢,苯酚加氢

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Abstract:

?使用共沉淀法制备了担载量很高的Ni/Al2O3催化剂,通过正丁醇干燥处理,提高了催化剂的表面积和担载镍的分散度.实验发现,镍的担载量和干燥过程对催化剂的表面积、孔结构及金属镍的还原度和分散度影响很大.经过正丁醇处理的80%Ni/Al2O3-B催化剂具有较高的表面积,而担载镍的还原度和分散度也显著提高,使得催化剂具有很高的活性金属镍表面积(90m2/g-催化剂),该催化剂对甲苯有较强的吸附作用,在甲苯和苯酚的芳环加氢反应中表现出了很高的催化活性.

References

[1]  Narayanan S, Unnikrishnan R, Vishwanathan V. Appl Catal A, 1995, 129: 9
[2]  Narayanan S, Unnikrishnan R. Appl Catal A, 1996, 145: 231
[3]  Molina R, Poncelet G. J Catal, 2001, 199: 162
[4]  Canning A S, Jackson S D, Mitchell S. Catal Today, 2006, 114: 372
[5]  Monteiro-Gezork A C A, Effendi A, Winterbottom J M. Catal Today, 2007, 128: 63
[6]  Savva P G, Goundani K, Vakros J, Bourikas K, Fountzoula C, Vattis D, Lycourghiotis A, Kordulis C. Appl Catal B, 2008, 79: 199
[7]  Meng X, Cheng H, Akiyama Y, Hao Y, Qiao W, Yu Y, Zhao F, Fujita S, Arai M. J Catal, 2009, 264: 1
[8]  Li F, Yi X D, Fang W P. Catal Lett, 2009, 130: 335
[9]  Li F, Yi X D, Zheng J B, Jin H, Fang W P. Catal Commun, 2009, 11: 266
[10]  Yang R, Li X, Wu J, Zhang X, Zhang Z, Cheng Y, Guo J. Appl Catal A, 2009, 368: 105
[11]  Grzechowiak J R, Szyszka I, Rynkowski J, Rajski D. Appl Catal A, 2003, 247: 193
[12]  Masalska A. Appl Catal A, 2005, 294: 260
[13]  Szegedi á, Popova M, Mavrodinova V, Urbán M, Kiricsi I, Minchev C. Microporous Mesoporous Mater, 2007, 99: 149
[14]  Fajardie F, Tempére J F, Djèga-Mariadassou G, Blanchard G. J Catal, 1996, 163: 77
[15]  Rogemond E, Essayem N, Frety R, Perrichon V, Primet M, Mathis F. J Catal, 1997, 166: 229
[16]  Chupin J, Gnep N S, Lacombe S, Guisnet M. Appl Catal A, 2001, 206: 43
[17]  Shin E J, Keane M A. J Catal, 1998, 173: 450
[18]  Shin E J, Keane M A. Ind Eng Chem Res, 2000, 39: 883
[19]  Li C, Chen Y. Thermochim Acta, 1995, 256: 457
[20]  Li G, Hu L, Hill J M. Appl Catal A, 2006, 301: 16
[21]  Vos B, Poels E, Bliek A. J Catal, 2001, 198: 77
[22]  Liu X, Khinast J G, Glasser B J. Ind Eng Chem Res, 2010, 49: 2649
[23]  González-Marcos M P, Gutiérrez-Ortiz J I, González-Ortiz de Elguea C, Delgado J A, González-Velasco J R. Appl Catal A, 1997, 162: 269
[24]  Ermakova M A, Ermakov D Y. Appl Catal A, 2003, 245: 277
[25]  Chen H, Xue M, Shen J. Catal Lett, 2010, 135: 246
[26]  Bartholomew C H, Farrauto R J. J Catal, 1976, 45: 41
[27]  Mustard D G, Bartholomew C H. J Catal, 1981, 67: 186
[28]  Suh D J, Park T J, Kim J H, Kim K L. J Non-Cryst Solids, 1998, 225: 168
[29]  Tang S, Ji L, Lin J, Zeng H C, Tan K L, Li K. J Catal, 2000, 194: 424
[30]  Krompiec S, Mrowiec-Bia?oń J, Skutil K, Dukowicz A, Pajazk L, Jarz?zbski A B. J Non-Cryst Solids, 2003, 315: 297
[31]  Quincoces C E, Basaldella E I, Vargas S P D, González M G. Mater Lett, 2004, 58: 272
[32]  Wang B, Zhang W, Zhang W. Drying Technol, 2005, 23: 7
[33]  Shan H, Zhang Z. J Eur Ceram Soc, 1997, 17: 713
[34]  Hu Z S, Dong J X, Chen G X. J Colloid Interface Sci, 1998, 208: 367
[35]  Pannell R B, Chung K S, Bartholomew C H. J Catal, 1977, 46: 340
[36]  Smith J S, Thrower P A, Vannice M A. J Catal, 1981, 68: 270
[37]  Medina F, Dutartre R, Tichit D, Coq B, Dung N T, Salagre P, Sueiras J E. J Mol Catal A, 1997, 119: 201
[38]  Lin S D, Vannice M A. J Catal, 1993, 143: 563
[39]  Hu S, Xue M, Chen H, Shen J. Chem Eng J, 2010, 162: 371
[40]  Coleman L J I, Epling W, Hudgins R R, Croiset E. Appl Catal A, 2009, 363: 52

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