English
新闻公告
More
化学进展 2008, Vol. 20 Issue (05): 650-656 前一篇   后一篇

• 综述与评论 •

ZSM-5分子筛在低碳烷烃脱氢中的催化应用*

胥月兵 陆江银** 钟梅 王吉德   

  1. (新疆大学 石油天然气精细化工教育部重点实验室 乌鲁木齐 830046)
  • 收稿日期:2007-06-11 修回日期:2007-06-25 出版日期:2008-05-24 发布日期:2008-05-24
  • 通讯作者: 陆江银

Catalytic Application of ZSM-5 Molecular Sieve for Light Alkanes Dehydrogenatoin

Xu Yuebing; Lu Jiangyin**; Zhong Mei; Wang Jide   

  1. (Key Laboratory of Oil & Gas Fine Chemicals, Ministry of Education, Xinjiang University, Urumqi 830046, China)
  • Received:2007-06-11 Revised:2007-06-25 Online:2008-05-24 Published:2008-05-24
  • Contact: Lu Jiangyin
ZSM-5分子筛是应用广泛的催化体系,常用于烷烃的芳构化、催化裂化及异构化。近年来因其独特的孔道结构及表面酸碱特性,开始应用于低碳烷烃脱氢。本文综述了Zn/ZSM-5及Ga/ZSM-5催化剂对低碳烷烃的脱氢理论研究,概述了Fe/ZSM-5、Cr/ZSM-5、Pt/ZSM-5以及一些其他过渡金属催化剂对低碳烷烃的催化应用;探讨了ZSM-5基催化剂的影响因素如硅铝比、焙烧温度及制备方法等,以利于对低碳烷烃脱氢可作进一步了解;最后对ZSM-5催化体系进行了评述及展望。
ZSM-5 molecular sieve was widely used as catalysts for aromatization, catalytic cracking and isomerization. Recently The ZSM-5 was applied to light alkanes dehydrogenation due to its unique bore configuration and the character of surface acidity. The paper summarized the progress of ZSM-5 in application and theoretical research for light alkanes dehydrogenation, including Zn/ZSM-5, Ga/ZSM-5 for theory of dehydrogenation used computer simulation, and the ZSM-5 catalysts modified with Fe, Cr, Pt and some transition metal else prepared by liquid-ion exchange and impregnation methods. The influencing factors of ZSM-5-based catalysts such as Si/Al, calcination temperature and the preparation methods are discussed. Further prospects of the ZSM-5-based catalysts are provided.

中图分类号: 

()

[1 ] Kubacka A , W¤ och E , Sulikowski B , et al . Catal . Today , 2000 ,61 : 343 —352
[2 ] 成岳(Cheng Y) , 李健生(Li J S) , 王连军(Wang L J ) . 化学进展(Progress in Chemistry) , 2006 , 18 : 221 —229
[3 ] 陆江银(Lu J Y) . 中国石油大学工学博士学位论文(Doctoral Dissertation of China University of Petroleum) , 2005
[4 ] 徐康(Xu K) . 化学进展( Progress in Chemistry) , 1991 , 3 :46 —57
[5 ] 李丽(Li L) , 阎子峰( Yan Z F) . 化学进展( Progress in Chemistry) , 2005 , 17 : 651 —659
[6 ] 刘睿(Liu R) . 大连理工大学硕士学位论文(Master Dissertation of Dalian University of Technology) , 2005
[7 ] 张一卫(Zhang Y W) , 周钰明(Zhou Y M) , 许艺(Xu Y) 等.化工进展(Chemical Industry and Engneering Progress) , 2005 ,24 : 729 —732
[8 ] 孟磊(Meng L) , 郑先福(Zheng X F) , 韩法元(Han F Y) . 河南化工(Henan Chemical Industry) , 2005 , 22 : 1 —3
[9 ] Lu J Y, Zhao Z , Xu C M, et al . Catal . Lett . , 2006 , 109 : 65 —70
[10] Lu J Y, Zhao Z , Xu C M, et al . Catal . Commun. , 2006 , 7 :199 —203
[11] Villegas J I , Kumar N , Heikkil? T , et al . J . Chem. Eng. ,2006 , 120 : 83 —89
[12] Biscardi J A , Iglesia E. Catal . Today , 1996 , 31 : 207 —231
[13] Biscardi J A , Meitzner G D , Iglesia E. J . Catal . , 1998 , 179 :192 —202
[14] Zhidomirov GM, Shubin A A , Kazansky V B , et al . J . Quantum Chem. , 2004 , 100 : 52 —61
[15] Pidko E A , Santen R A. J . Phys. Chem. C , 2007 , 111 : 2643 —2655
[16] Barbosa L A M M, van Santen R A. J . Am. Chem. Soc. , 2001 ,123 : 4530 —4540
[17] Barbosa L A M M, van Santen R A. J . Phys. Chem. B , 2003 ,107 : 4532 —4536
[18] Biscardi J A , Iglesia E. J . Catal . , 1999 , 182 : 117 —128
[19] Kazansky V B , Subbotina I R , Rane N , et al . Phys. Chem.Chem. Phys. , 2005 , 7 : 3088 —3092
[20] Frash M V , van Santen R A. Phys. Chem. Chem. Phys. , 2000 ,2 : 1085 —1096
[21] Pidko E A , Kazansky V B , Hensen EJ , et al . J . Catal . , 2006 ,240 : 73 —84
[22] Pereira M S , Nascimento M A C. J . Phys. Chem. B , 2006 ,110 : 3231 —3238
[23] Pereira M S , Nascimento M A C. Chem. Phys. Lett . , 2005 ,406 : 446 —451
[24] Joshi YV , Thomson K T. J . Catal . , 2007 , 246 : 249 —265
[25] Frash M V , van Santen R A. J . Phys. Chem. A , 2000 , 104 :2468 —2475
[26] Kazansky V B , Pidko E A. J . Phys. Chem. B , 2005 , 109 :2103 —2108
[27] Bulánek R , WichterlováB , NovoveskáK, et al . Appl . Catal .A: General , 2004 , 264 : 13 —22
[28] Gallardo-Llamas A , Mirodatos C , Pérez-Ramírez J . Ind. Eng.Chem. Res. , 2005 , 44 : 455 —462
[29] Pérez-Ramírez J , Gallardo-Llamas A. J . Phys. Chem. B , 2005 ,109 : 20529 —20538
[30] Pérez-Ramírez J , Gallardo-Llamas A. Appl . Catal . A: General ,2005 , 279 : 117 —123
[31] Pérez-Ramírez J , Gallardo-Llamas A. J . Catal . , 2004 , 223 :382 —388
[32] Held A , Kowalska J , Nowiuńska K. Appl . Catal . B :Environmental , 2005 , 64 : 201 —208
[33] Nowińska K, Wac¤ aw A , Izbińska A. Appl . Catal . A: General ,2003 , 243 : 225 —236
[34] Kondratenko E V , Pérez-Ramírez J . Appl . Catal . A: General ,2004 , 267 : 181 —189
[35] Pérez-Ramírez J , Gallardo-Llamas A , Daniel C , et al . Chem.Eng. Sci . , 2004 , 59 : 5535 —5543
[36] NovoveskáK, Bulánek R , WichterlováB. Catal . Today , 2005 ,100 : 315 —319
[37] Pérez-Ramírez J , Kondratenko E V , Debbagh M N. J . Catal . ,2005 , 233 : 442 —452
[38] Held A , Kowalska J , Nowińska K. Appl . Catal . B :Environmental , 2006 , 64 : 201 —208
[39] Sánchez-GalofréO , Segura Y, Pérez-Ramírez J . J . Catal . ,2007 , 249 : 121 —131
[40] 郑雯(Zheng W) , 程党国(Cheng D G) , 陈丰秋(Chen F Q)等. 化工进展(Chemical Industry and Engineering Progress) ,2006 , 25 : 1391 —1394
[41] Chang Y F , Somorjai G A , Heinemann H J . J . Catal . , 1995 ,24 —32
[42] Mimura N , Okamoto M, Yamashita H , et al . J . Phys. Chem. B ,2006 , 110 : 21764 —21770
[43] Mimura N , Takahara I , Inaba M, et al . Catal . Commun. , 2002 ,3 : 257 —262
[44] Wang S , Murata K, Hayakawa T , et al . Appl . Catal . A:General , 2000 , 196 : 1 —8
[45] Giannetto G, Garcia L , Papa J , et al . Zeolites , 1997 , 19 : 169 —179
[46] Yamashita H , Anpo M. Curr. Opin. Solid State Mater. Sci . ,2003 , 7 : 471 —481
[47] Wang S B , Zhu Z H. Energy &Fuels , 2004 , 18 : 1126 —1139
[48] 孙果宋(Sun G S) , 黄科林(Huang KL) , 杨波( Yang B) 等.化工进展(Chemical Industry and Engineering Progress) , 2007 ,26 : 216 —220
[49] Zhang Y W, Zhou Y M, Qiu A D , et al . Ind. Eng. Chem.Res. , 2006 , 45 : 2213 —2219
[50] Zhang Y W, Zhou Y M, Li Y, et al . Catal . Commun. , 2007 , 8 :1009 —1016
[51] Zhang Y W, Zhou Y M, Yang K Z , et al . Microporous and Mesoporous Materials , 2006 , 96 : 245 —254
[52] 张一卫(Zhang Y W) , 周钰明(Zhou Y M) , 叶志良( Ye Z L)等. 现代化工(Mordern Chemical Industry) , 2006 , 26 ( 2) :33 —37
[53] 张一卫(Zhang Y W) , 周钰明(Zhou Y M) , 邱安定(Qiu A D)等. 物理化学学报(Acta Phys. Chim. Sin. ) , 2006 , 22 :672 —678
[54] Zhang Y W, Zhou Y M, Qiu A D , et al . Catal . Commun. ,2006 , 7 : 860 —866
[55] McNamara J M, Jackson D , Lennon D. Catal . Today , 2003 , 81 :583 —587
[56] Cortright R D , Hill J M, Dumesic J A. Catal . Today , 2000 , 55 :213 —223
[57] 邱安定(Qiu A D) . 精细石油化工进展(Advances in Fine Petrochemicals) , 2005 , 6 : 24 —27
[58] Andy P , DavisM E. Ind. Eng. Chem. Res. , 2004 , 43 : 2922 —2928
[59] Barri S A I , Tahir R. US 5 208 201 , 1993
[60] De Cola P L , Gl? ser R , Weitkamp J . Appl . Catal . A: General ,2006 , 306 : 85 —97
[61] Waku T , Biscardi J A , Iglesia E. J . Catal . , 2004 , 222 : 481 —492
[62] Grasselli R K, Stern D L , Tsikoyiannis J G. Appl . Catal . A:General , 1999 , 189 : 1 —8
[63] Pirngruber G D , Seshan K, Lercher J A. J . Catal . , 1999 , 186 :188 —200
[64] Grasselli R K, Stern D L , Tsikoyiannis J G. Appl . Catal . A:General , 1999 , 189 : 9 —14
[65] Bulánek R , Novoveská K, Wichterlová B. Appl . Catal . A:General , 2002 , 235 : 181 —191
[66] Amin N A S , Anggoro D D. J . Nat . Gas Chem. , 2003 , 12 :123 —131
[67] Lu J Y, Zhao Z , Xu C M, et al . J . Nat . Gas Chem. , 2005 , 14 :1 —8

[1] 王童, 文姣, 李良春, 郑仁林, 孙德群. 脱氢氨基酸的合成及其在药物研发中的应用[J]. 化学进展, 2020, 32(1): 55-71.
[2] 陈劲进, 常丹, 肖福红, 邓国军*. 基于环己酮氧化脱氢构建碳-碳与碳-杂键[J]. 化学进展, 2018, 30(5): 564-577.
[3] 闵媛媛, 尚蕴山, 宋宇, 李国栋, 巩雁军. 纳米薄层分子筛的合成与应用[J]. 化学进展, 2015, 27(8): 1002-1013.
[4] 陈艳平, 程党国, 陈丰秋, 詹晓力. Cu-ZSM-5分子筛催化分解及选择性催化还原NO[J]. 化学进展, 2014, 26(0203): 248-258.
[5] 马文婵, 周乔, 张月成, 赵继全. 醇-胺直接脱氢及氧化脱氢偶联酰胺化反应[J]. 化学进展, 2014, 26(0203): 334-344.
[6] 柳彦从 胥月兵 陆江银. ZSM-5催化乙醇制低碳烯烃*[J]. 化学进展, 2010, 22(04): 754-759.
[7] 朱刚利 杨伯伦. 液体有机氢化物储氢研究进展*[J]. 化学进展, 2009, 21(12): 2760-2770.
[8] 马涛,王睿. NOx的催化分解研究*[J]. 化学进展, 2008, 20(06): 798-810.
[9] 胥月兵,陆江银,王吉德. 正丁烷脱氢制正丁烯催化剂*[J]. 化学进展, 2007, 19(10): 1481-1487.
[10] 唐玉朝,黄显怀,俞汉青,胡,春. 非金属掺杂改性TiO2光催化剂的机理*[J]. 化学进展, 2007, 19(0203): 225-233.
[11] 成岳,李健生,王连军,孙秀云. ZSM-5分子筛膜的研究进展*[J]. 化学进展, 2006, 18(0203): 221-229.
[12] 李丽,阎子峰. 异丁烷脱氢催化剂的研究*[J]. 化学进展, 2005, 17(04): 651-659.
[13] 王华,刘中民. 甲烷直接转化研究进展[J]. 化学进展, 2004, 16(04): 593-.
[14] 季东,任通,张小明,索继栓,丁勇. FeZSM-5/N2O催化氧化苯制苯酚[J]. 化学进展, 2003, 15(01): 51-.
[15] 张法智,徐柏庆. CO2选择氧化低碳烷烃的研究进展*[J]. 化学进展, 2002, 14(01): 56-.