OALib Journal期刊
ISSN: 2333-9721
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多级孔分子筛的制备与催化应用
DOI: 10.7536/PC130413 , PP. 2028-2037
Keywords: 多级孔分子筛 ,催化应用 ,沸石 ,扩散 ,工业放大
Abstract:
分子筛研究的热点问题之一是如何减小微孔扩散阻力对传质带来的不利影响,以提高催化剂的利用效率。通过引入介孔,实现多级孔分子筛材料的设计是解决上述问题的一种有效方法。本文介绍了多级孔分子筛材料提高反应扩散效率的理论依据以及国内外多级孔分子筛材料制备方面的研究进展。主要包含“破坏性”方法(destructivemethods)和“建设性”方法(constructivemethods)的原理,从水热稳定性、酸性、操作性以及可放大性分析了各种合成方法的优势和不足。本文还介绍了多级孔分子筛在催化反应中的若干应用实例,重点介绍了多级孔材料在催化裂化和加氢反应中的应用进展,表明多级孔分子筛可以提高选择性以及转化率。开发适宜酸性以及水热稳定性的微孔-介孔分子筛,同时兼顾低成本、低污染以及易操作性的合成技术是将来研究的重点,同时应建立多级孔分子筛催化性能与结构的关系,加深对多级孔分子筛的认识。
References
[1] 高滋(Gao Z). 沸石催化与分离技术(Zeolite Catalysis and Separation Technology). 北京: 中国石化出版社(Beijing: China Petrochemical Press), 1999. 3—5
[2] 徐如人(Xu R R), 庞文琴(Pang W Q). 分子筛与多孔材料化学(Chemistry——Zeolites and Porous Materials). 北京: 科学出版社(Beijing: Science Press), 2004. 34—53
[3] Na K, Choi M, Ryoo R. Micropor. Mesopor. Mater., 2013, 166: 3—19
[4] Pérez-Ramírez J, Christensen C H, Egeblad K, Christensen C H, Groen J C. Chem. Soc. Rev., 2008, 37: 2530—2542
[5] Levenspiel O. Chemical Reaction Engineering. 3rd ed. NY: John Wiley & Sons, 1999. 381—385
[6] 甄开吉(Zhen K J), 王国甲(Wang G J), 毕颖丽(Bi Y L), 李荣生(Li R S), 阚秋斌(Kan Q B). 催化作用基础(An Introduction to Catalysis). 北京: 科学出版社(Beijing: Science Press), 2005. 89—93
[7] Corma A, Diaz-Caba?as M J, Martinez-Triguero J, Rey F, Rius J. Nature, 2002, 418: 514—517
[8] Corma A, Diaz-Caba?as M J, Rey F, Nicolopoulus S, Boulahya K. Chem. Commun., 2004, 1356—1357
[9] Aguado J, Serrano D P, Escola J M, Rodríguez J M. Micropor. Mesopor. Mater., 2004, 75: 41—49
[10] Kresge C T, Leonowicz M E, Roth W J, Vartuli J C, Beck J S. Nature, 1992, 359: 710—712
[11] ye G, Sj?blom J, St?cker M. Adv. Colloid Interface Sci., 2001, 89/90: 439—466
[12] Zhao D, Feng J, Huo Q, Melosh N, Fredrickson G H, Chmelka B F, Stucky G D. Science, 1998, 279: 548—552
[13] Chal R, Gérardin C, Bulut M, van Donk S. ChemCatChem, 2011, 3: 67—81
[14] Chang X, He L, Liang H, Liu X, Yan Z. Catal. Today, 2010, 158: 198—204
[15] 昌兴文(Chang X W). 中国石油大学(华东)硕士论文(Master Dissertation of China University of Petroleum, East China), 2010
[16] 何丽凤(He L F). 中国石油大学(华东)硕士论文(Master Dissertation of China University of Petroleum, East China), 2012
[17] Janssen A H, Koster A J, de Jong K P. J. Phys. Chem. B, 2002, 106: 11905—11909
[18] Verboekend D, Pérez-Ramírez J. Catal. Sci. Technol., 2011, 1: 879—890
[19] Groen J C, Jansen J C, Moulijn J A, Pérez-Ramírez J. J. Phys. Chem. B, 2004, 108: 13062—13065
[20] Van Mao R L, Ramsaran A, Xiao S, Yaot J, Semme V. J. Mater. Chem., 1995, 5: 533—535
[21] Abelló S, Bonilla A, Pérez-Ramírez J. Appl. Catal. A, 2009, 364: 191—198
[22] Vennestr?m P N R, Grill M, Kustova M, Egeblad K, Lundegaard L F, Joensen F, Christensen C H, Beato P. Catal. Today, 2011, 168: 71—79
[23] Pérez-Ramírez J, Verboekend D, Bonilla A, Abelló S. Adv. Funct. Mater., 2009, 19: 3972—3979
[24] Pérez-Ramírez J, Abelló S, Bonilla A, Groen J C. Adv. Funct. Mater., 2009, 19: 164—172
[25] Zhao L, Xu C, Gao S, Shen B. J. Mater. Sci., 2010, 45: 5406—5411
[26] 宋春敏(Song C M). 中国石油大学(华东)博士论文(Doctoral Dissertation of China University of Petroleum, East China), 2006
[27] Verboekend D, Chabaneix A M, Thomas K, Gilson J P, Pérez-Ramírez J. CrystEngComm., 2011, 13: 3408—3416
[28] Svelle S, Sommer L, Barbera K, Vennestr?m P N R, Olsbye U, Lillerud K P, Bordiga S, Pan Y H, Beato P. Catal. Today, 2011, 168: 38—47
[29] Groen J C, Moulijn J A, Pérez-Ramírez J. J. Mater. Chem., 2006, 16: 2121—2131
[30] Pérez-Ramírez J, Mitchell S, Verboekend D, Milina M, Michels N L, Krumeich F, Marti N, Erdmann M. ChemCatChem, 2011, 3: 1731—1734
[31] Yang Z X, Xia Y D, Mokaya R. Adv. Mater., 2004, 16: 727—732
[32] Tao Y, Kanoh H, Kaneko K. J. Am. Chem. Soc., 2003, 125: 6044—6045
[33] Kustova M Y, Hasselriis P, Christensen C H. Catal. Lett., 2004, 96: 205—211
[34] Wei X, Smirniotis P G. Micropor. Mesopor. Mater., 2006, 89: 170—178
[35] Egeblad K, Kustova M, Klitgaard S K, Zhu K, Christensen C H. Micropor. Mesopor. Mater., 2007, 101: 214—223
[36] Tao Y, Kanoh H, Abrams L, Kaneko K. Chem. Rev., 2006, 106: 896—910
[37] Wang L, Yin C, Shan Z, Liu S, Du Y, Xiao F S. Colloids Surf., A, 2009, 340: 126—130
[38] Meng X, Nawaz F, Xiao F S. Nano Today, 2009, 4: 292—301
[39] Sun C, Du J, Liu J, Yang Y, Ren N, Shen W, Xu H, Tang Y. Chem. Commun., 2010, 46: 2671—2673
[40] Zhu H, Liu Z, Wang Y, Kong D, Yuan X, Xie Z. Chem. Mater., 2007, 20: 1134—1139
[41] Zhu Y, Hua Z, Zhou J, Wang L, Zhao J, Gong Y, Wu W, Ruan M, Shi J. Chem. Eur. J., 2011, 17: 14618—14627
[42] Wang L, Zhang Z, Yin C, Shan Z, Xiao F S. Micropor. Mesopor. Mater., 2010, 131: 58—67
[43] Choi M, Na K, Kim J, Sakamoto Y, Terasaki O, Ryoo R. Nature, 2009, 461: 246—249
[44] Na K, Choi M, Park W, Sakamoto Y, Terasaki O, Ryoo R. J. Am. Chem. Soc., 2010, 132: 4169—4177
[45] Na K, Jo C, Kim J, Cho K, Jung J, Seo Y, Messinger R J, Chmelka B F, Ryoo R. Science, 2011, 333: 328—332
[46] Liu Y, Zhang W, Pinnavaia T J. J. Am. Chem. Soc., 2000, 122: 8791—8792
[47] Zhang Z, Han Y, Xiao F S, Qiu S, Zhu L, Wang R, Yu Y, Zhang Z, Zou B, Wang Y. J. Am. Chem. Soc., 2001, 123: 5014—5021
[48] 韩宇(Han Y), 肖丰收(Xiao F S). 催化学报(Chinese Journal of Catalysis), 2003, 24: 149—158
[49] García-Martínez J, Johnson M, Valla J, Li K, Ying J Y. Catal. Sci. Technol., 2012, 2: 987—994
[50] Song C M, Jiang J, Yan Z F. J. Porous Mater., 2008, 15: 205—211
[51] Song C M, Yan Z F. Asia-Pac. J. Chem. Eng., 2008, 3: 275—283
[52] Zhang Z, Yan Z. J. Porous Mater., 2013, 20: 309—317
[53] Chao P H, Tsai S T, Chang S L, Wang I, Tsai T C. Top. Catal., 2010, 53: 231—237
[54] Bari Siddiqui M, Aitani A, Saeed M, Al-Khattaf S. Top. Catal., 2010, 53: 1387—1393
[55] Tang T, Yin C, Wang L, Ji Y, Xiao F S. J. Catal., 2008, 257: 125—133
[56] Tang T, Yin C, Wang L, Ji Y, Xiao F S. J. Catal., 2007, 249: 111—115
[57] Zhang Z, Xiao J, Dai L, Wang Y, Wang D, Liu X, Yan Z. J. Porous Mater., 2012, 19: 473—479
[58] Corma A, Diaz-Caba?as M J, Jord J L, Martínez C, Moliner M. Nature, 2006, 443: 842—845
[59] Jiang J, Yu J, Corma A. Angew. Chem. In. Ed., 2010, 49: 3120—3145
[60] Chen L H, Li X Y, Rooke J C, Yang X Y, Tang Y, Zhang Y H, Xiao F S, Su B L. J. Mater. Chem., 2012, 22: 17381—17403
[61] Van Grieken R, Sotelo J, Menendez J, Melero J. Micropor. Mesopor. Mater., 2000, 39: 135—147
[62] 刘欣梅(Liu X M), 梁海宁(Liang H N), 李亮(Li L), 杨婷婷(Yang T T), 阎子峰(Yan Z F). 催化学报(Chinese Journal of Catalysis), 2010, 31(7): 833—838
[63] 张磊(Zhang L). 中国石油大学(华东)博士论文(Doctoral Dissertation of China University of Petroleum, East China), 2008
[64] Verboekend D, Pérez-Ramírez J. Chem. Eur. J., 2011, 17: 1137—1147
[65] Verboekend D, Mitchell S, Milina M, Groen J C, Pérez-Ramírez J. J. Phys. Chem. C, 2011, 115: 14193—14203
[66] Ogura M, Shinomiya S, Tateno J, Nara Y, Kikuchi E, Matsukata M. Chem. Lett., 2000, 29: 882—883
[67] Groen J, Moulijn J A, Pérez-Ramírez J. Ind. Eng. Chem. Res., 2007, 46: 4193—4201
[68] Holm M S, Hansen M K, Christensen C H. Eur. J. Inorg. Chem., 2009, 9: 1194—1198
[69] 陈芳(Chen F), 孟祥举(Meng X J), 肖丰收(Xiao F S). 科学通报(Chinese Science Bulletin), 2010, 55(29): 2785—2793
[70] Schmidt I, Madsen C, Jacobsen C J H. Inorg. Chem., 2000, 39: 2279—2283
[71] Tao Y, Kanoh H, Kaneko K. J. Phys. Chem. B, 2003, 107: 10974—10976
[72] Tao Y, Kanoh H, Kaneko K. Langmuir, 2004, 21: 504—507
[73] Ren L, Wu Q, Yang C, Zhu L, Li C, Zhang P, Zhang H, Meng X, Xiao F S. J. Am. Chem. Soc., 2012, 134: 15173—15176
[74] Choi M, Cho H S, Srivastava R, Venkatesan C, Choi D H, Ryoo R. Nat. Mater., 2006, 5: 718—723
[75] Xiao F S, Wang L, Yin C, Lin K, Di Y, Li J, Xu R, Su D S, Schl?gl R, Yokoi T, Tatsumi T. Angew. Chem. Int. Ed., 2006, 118: 3162—3165
[76] Liu S, Cao X, Li L, Li C, Ji Y, Xiao F S. Colloids Surf., A, 2008, 318: 269—274
[77] Ivanova I I, Knyazeva E E. Chem. Soc. Rev., 2013, 42: 3671—3688
[78] García-Martínez J, Li K, Krishnaiah G. Chem. Commun., 2012, 48: 11841—11843
[79] Christensen C H, Johannsen K, Schmidt I, Christensen C H. J. Am. Chem. Soc., 2003, 125: 13370—13371
[80] van laak A N C, Gosselink R W, Sagala S L, Meeldijk J D, de Jongh P E, de Jong K P. Appl. Catal., A, 2010, 382: 65—72
[81] Sun Y, Prins R. Appl. Catal. A, 2008, 336: 11—16
[82] Bj?rgen M, Joensen F, Spangsberg Holm M, Olsbye U, Lillerud K P, Svelle S. Appl. Catal., A, 2008, 345: 43—50
[83] Mei C, Wen P, Liu Z, Liu H, Wang Y, Yang W, Xie Z, Hua W, Gao Z. J. Catal., 2008, 258: 243—249
[84] Li Y, Liu S, Zhang Z, Xie S, Zhu X, Xu L. Appl. Catal. A, 2008, 338: 100—113
[85] Mokrzycki ?, Sulikowski B, Olejniczak Z. Catal. Lett., 2009, 127: 296—303
[86] Zhu H, Liu Z, Kong D, Wang Y, Xie Z. J. Phy. Chem. C, 2008, 112: 17257—17264
[87] Park D H, Kim S S, Wang H, Pinnavaia T J, Papapetrou M C, Lappas A A, Triantafyllidis K S. Angew. Chem. Int. Ed., 2009, 48: 7645—7648
[88] Shetti V N, Kim J, Srivastava R, Choi M, Ryoo R. J. Catal., 2008, 254: 296—303
[89] Palkovits R, Schmidt W, Ilhan Y, Erdem-?natalar A, Schüth F. Micropor. Mesopor. Mater., 2009, 117: 228—232
[90] Holm M S, Taarning E, Egeblad K, Christensen C H. Catal. Today, 2011, 168: 3—16
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