English
新闻公告
More
化学进展 2002, Vol. 14 Issue (02): 146- 前一篇   后一篇

• 综述与评论 •

烯烃齐聚催化反应研究进展*

纪华;吕毅军;胡津仙;相宏伟**;李永旺

  

  1. 中国科学院山西煤炭化学研究所煤转化国家重点实验室 太原 030001
  • 收稿日期:2001-03-01 修回日期:2001-05-01 出版日期:2002-03-24 发布日期:2002-03-24
  • 通讯作者: 相宏伟

Advances in the Catalytic Reaction of Olefin Oligomerization

Ji Hua;Lu Yijun;Hu Jinxian;Xiang Hongwei;Li Yongwang   

  1. State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, China
  • Received:2001-03-01 Revised:2001-05-01 Online:2002-03-24 Published:2002-03-24
  • Contact: Xiang Hongwei
烯烃齐聚反应作为一类重要的工业反应,是生产发动机燃料、洗涤剂原料、润滑油、增塑剂等化学品的有效途径。本文详细综述了国内外烯烃齐聚反应的研究进展与工业化现状,重点介绍了用于该反应的催化剂和工艺过程,并讨论了典型催化剂体系上的烯烃齐聚反应机理。
The olefin oligomerization is an effective approach to produce motor fuels, detergent feedstock, lubricants, plasticizers and other chemicals. In this paper the recent advances and industrial applications of olefin oligomerization are reviewed. The catalysts and technical processes for this reaction are introduced, and the mechanisms of olefin oligomerization over representative catalysts are discussed.

中图分类号: 

()

[ 1 ] 颜志光(Yan Z G) , 杨正宇(Yang Z Y). 合成润滑剂(Synthesis of Lubricant ). 北京(Beijing ) : 中国石化出版社(Chinese Petroleum Chemistry Industry Publisher) , 1996.175
[ 2 ] 陈文造(Chen W Z). 石油炼制( Petroleum Refinery) ,1989, 2: 16—21
[ 3 ] 宋瑞崎(Song R Q ) , 相宏伟(Xiang H W ) , 李永旺(Li Y W ) , 钟炳(Zhong B ). 燃料化学学报(Journal of Fuel Chemistry and Technology) , 1999, 27 ( suppl) : 79—89
[ 4 ] Arganer R J , Landolt G R. U S 3 702 886, 1972
[ 5 ] 高滋(Gao Z) , 何鸣元(He M Y) , 戴逸云(Dai Y Y). 沸石催化与分离技术(Technology of Zeolite Catalysis and Separation ). 北京(Beijing ) : 中国石化出版社(Chinese Petroleum Chemistry Industry Publisher) , 1999. 128
[ 6 ] 山田侃. Petrotech, 1993, 16 (8) : 39—41
[ 7 ] Cai T. Catal. Today, 1999, 51 (1) : 153—160
[ 8 ] 黄文(Huang W ). 化工科技动态(Chemical Science & Technology Trends) , 1995, 10: 21—24
[ 9 ] 刘立新(Liu L X). 石油与天然气化工(Chemical Engineering of Oil and Gas) , 1996, 2: 78—80
[ 10 ] Jaguar M G. International Natural Gas Conversion Symposium, FT-1, South Africa, 1995
[ 11 ] Heveling J , Nicolaides C P, Scurrel M S. Appl. Catal. ,1988, 173 : 1—7
[ 12 ] Tabak S A , Yurchak S. Catal. Today, 1990, 6: 307—311
[ 13 ] Armor J N. Appl. Catal. , 1991, 78 : 141—148
[ 14 ] MacDougall L V. Catal. Today, 1991, 8 : 337—341
[ 15 ] 许德联(Xu D L ). 石油化工要闻(News for Chemical Industry of Oil ) , 1999, 9: 9—12
[ 16 ] Klbel H, Ralek M. Catal. Rev. , 1980, 21: 225—228
[ 17 ] 钟炳( Zhong B ) 等. 煤基合成液体燃料(Coal-based Synfuel) , 张碧江主编(Ed. Zhang B J ). 太原(Taiyuan) :山西科学技术出版社(Shanxi Science and Technology Publisher) , 1993. 375
[ 18 ] 吉媛媛(Ji Y Y) , 杨继礼(Yang J L ) , 相宏伟(Xiang H W ) , 徐元源(Xu Y Y) , 李永旺(Li Y W ) , 钟炳(Zhong B). 燃料化学学报(Journal of Fuel Chemistry and Technology) , 1999, 27 ( suppl) : 129—136
[ 19 ] 王琴(Wang Q ) , 罗庆云(Luo Q Y) , 钟炳(Zhong B) , 彭少逸(Peng S Y). 燃料化学学报(Journal of Fuel Chemistry and Technology) , 1993, 21 (4) : 356—361
[ 20 ] Kojima M , O’Connor C T. Alkene Oligomerization. Elsevier Science Publishers B. V. , 1990. 329—349
[ 21 ] Hars S M , Kojima M , O’Connor C T. Fuel Processing Technology, 1989, 31: 231—243
[ 22 ] Tabak S A. Thailand-U S. Natural Gas Utilization Symposium, 1984, 2: 7—12
[ 23 ] Garwood W E, Krambeck F J , Kushnerick J D, Tabak S A. U S 4 740 645, 1988
[ 24 ] Miller S J. U S 4 542 251, 1985
[ 25 ] Tabak S A. U S 4 254 295, 1981
[ 26 ] Chu C T W , Valyocsik E W. U S 4 665 250, 1987
[ 27 ] Bercik P G, Metzger K J , Swift H E. Ind. Eng. Chem.Prod. Res. Dev. , 1987, 17 : 214
[ 28 ] Occelli M L , Hsu J T, Galya L G. J. Mol. Catal. , 1985,32: 377—390
[ 29 ] O’Connor C T, Kojima M. Catal. Today, 1990, 6 ( 3) :329—349
[ 30 ] Dzikh I P, et al. Appl. Catal. , 1999, 177: 245—258
[ 31 ] Pellet R J , Coughlin P K, Shamshoum E S, et al. Perspective in Molecular Sieve Science. ACS, Toronto, Canada, 1988. 512
[ 32 ] Galya L G, Occelli M L , Hsu J T, Young D C. J. Mol.Catal. , 1985, 32 : 391
[ 33 ] Chichea B, Sauvagea E, et al. J. Mol. Catal. A: Chem. ,1998, 134 (1—3) : 145—157
[ 34 ] Miller S J. Catalysis. Elsevier, 1988. 187—192
[ 35 ] Haag W O , Chem. Eng. Prog. Symp. Ser. , 1967, 63(73) : 140—146
[ 36 ] Farbenfabrieken Bayer Aktiengesellschaft. U K 973 555,1964
[ 37 ] Kazansky V B, Abbenhuis R A , et al. Catal. Lett. ,2000, 69 (122) : 51—58
[ 38 ] Imai H, Uchida H. Bull. Chem. Soc. Japan, 1964, 38(6) : 925—930
[ 39 ] Imai H, Uchida H. Bull. Chem. Soc. Japan, 1966, 40 (2): 321—326
[ 40 ] Imai H, Hasegawa T, Uchida H. Bull. Chem. Soc.Japan, 1968, 41 : 45—48
[ 41 ] Hogan J P, Banks R L , Lanning W C, Clark A. Ind.Eng. Chem. , 1955, 47 : 752—757
[ 42 ] Harms S M , Kojima M , O’Connor C T. Fuel Proc.Tech. , 1989, 31 : 231—243
[ 43 ] Chauvin Y, Ommereuc D C, Hughes F, Thivolle-Cazat J.Appl. Catal. , 1988, 42 : 205—216
[ 44 ] Espinoza R L , Korf C J , Nicolaides C P, Nel R. Appl.Catal. , 1987, 29 : 175—184
[ 45 ] Espinoza R L , Snel R, Korf C J , Nicolaides C P. Appl.Catal. , 1987, 29 : 295—304
[ 46 ] Espinoza R L , Snel R, Korf C J , Nicolaides C P. Appl.Catal. , 1987, 31 : 259—266
[ 47 ] 樊宏飞(Fan H F) , 张先华(Zhang X H) , 贺民(He M ) , 刘颐静(Liu Y J ) , 蔡天锡(Cai T X). 石油学报(Acta Petrolei Sinica ) , 2000, 4 (16) : 46—50
[ 48 ] 高占先(Gao Z X) , 李文忠(Li W Z) , 周科衍(Zhou K Y).石油学报(Acta Petrolei Sinica ) , 1994, 10 (3) : 47—53
[ 49 ] 唐晓东(Tang X D) , 严志宇(Yan Z Y) , 曹殿学(Cao D X) , 蔡天锡(Cai T X). 石油学报(Acta Petrolei Sinica ) ,1996, 12 (4) : 36—43
[ 50 ] 严志宇(Yan Z Y) , 曹殿学(Cao D X) , 蔡天锡(Cai T X).石油学报(Acta Petrolei Sinica ) , 1997, 13 (1) : 18—22
[ 51 ] 严志宇(Yan Z Y) , 唐晓东(Tang X D) , 曹殿学(Cao D X) , 张有家(Zhang Y J ) , 蔡天锡(Cai T X). 石油学报(Acta Petrolei Sinica ) , 1997, 13 (1) : 13—17
[ 52 ] Brassata I, Keima W , Killata S. J. Mol. Catal. A: Chemical, 2000, 157 (1-2) : 41—58
[ 53 ] Fel’dblyum V S, Obeshchalova N V. Russ. Chem. Rev. ,1968, 37 (10) : 428—433
[ 54 ] Bogdanovic B. Adv. Organometallic Chem. , 1979, 17 :105—140
[ 55 ] Bogdanovic B, Henc B, Karmann H G, Nussdl H G, Walter D. Wilke G. Ind. Eng. Chem. , 1970, 62 (12) : 34—45
[ 56 ] Keim W , Behr A , Roper M. Organometallic Compounds in Organometallic Synthesis and in Catalysis: Alkene and Alkyne Oligomerization. Cooligomerization and Telomerization. in Comprehensive Organometallic Chemistry. New York: Pergamon Press, 1982, 5: 371—462
[ 57 ] Muthukumaru Pillai S, Ravindranathan M , Sivaram S.Chem. Rev. , 1986, 86 : 353—399
[ 58 ] Bauer R S, Chung H, Glockner P W , Keim W , van Zwet H. U S 3 635 937, 1972
[ 59 ] Commereuc D, Chauvin Y, Gaillard J , Leonard J , Andrews J. Hydrocarbon Process, 1984, 11: 118—120
[ 60 ] Benedek W J , Mauleon J L. Oil & Gas J. , 1980, 4 : 77—83
[ 61 ] Chauvin Y, Gaillard J , Leonard J , Bonnifay P, Andrews J W. Hydrocarbon Process, 1982, 5: 110—112
[ 62 ] Provin G, Forestiere A , Commerenc D. U S 4 716 239,1987
[ 63 ] Leonard J , Gaillard J F. Hydrocarbon P rocess, 1981, 8:99—100
[ 64 ] Le Pennec D, Commereuc D, Chauvin Y. U S 4 398 049,1982
[ 65 ] Le Pennec D, Commereuc D, Chauvin Y. U S 4 366 087,1982
[ 66 ] Cheney H A , McAllister S H, Fountain E B, Anderson J ,Peterson W H. Ind. Eng. Chem. , 1950, 42 (12) : 2580—2586
[ 67 ] Tsuda N , Mori T, Kosaka N , Sakai Y. J. Mol. Catal. ,1985, 28 : 183—190
[ 68 ] 葛从辛(Ge C X) , 王立(Wang L ) , 封麟先(Feng L X). 石油化工(Petrochemical Technology) , 1999, 28 (3) : 157—160
[ 69 ] Briggs J R. U S 4 668 838, 1987
[ 70 ] Slaugh L H, Schoenthal G W. U S 4 658, 1987
[ 71 ] Samsel E G, Eisenberg D C. EP 574 854, 1993
[ 72 ] Wu F J. CA 2 115 639, 1994
[ 73 ] 沈玉梅( Shen Y M ). 博士学位论文(Doctoral Dissertation) , 大连理工大学(Dalian University of Technology) , 1999
[ 74 ] Horton A D, Dewith J. WO 9 627 439, 1996
[ 75 ] Thomas J M , Thomas W J. Principle and Practice of Heterogeneous Catalysis, Germany, VCH, 1997. 169—174
[ 76 ] Repas M. Chem. Tech. , 1965, 17: 222—228
[ 77 ] Schwaze S. Appl. Catal. , 1989, 56: 263—269
[ 78 ] Imai H, Hasegawa T. Bull. Chem. Soc. Jpn. , 1968, 41:451—459
[ 79 ] Keim W , Beh r A , Gruber B, Hoffmann B, Kowaldt F H.Organometallics, 1986, 5: 2356—2359.
[ 80 ] Peuckert M , Keim W. Organometallics, 1983, 2 : 584—589
[ 81 ] Janiak C. Macromol. Rapid. Commun. , 1995, 16 ( 9 ) :643—650
[ 82 ] Mise T. Chemistry Letters, 1991: 1525—1528

[1] 李佳烨, 张鹏, 潘原. 在大电流密度电催化二氧化碳还原反应中的单原子催化剂[J]. 化学进展, 2023, 35(4): 643-654.
[2] 邵月文, 李清扬, 董欣怡, 范梦娇, 张丽君, 胡勋. 多相双功能催化剂催化乙酰丙酸制备γ-戊内酯[J]. 化学进展, 2023, 35(4): 593-605.
[3] 徐怡雪, 李诗诗, 马晓双, 刘小金, 丁建军, 王育乔. 表界面调制增强铋基催化剂的光生载流子分离和传输[J]. 化学进展, 2023, 35(4): 509-518.
[4] 杨越, 续可, 马雪璐. 金属氧化物中氧空位缺陷的催化作用机制[J]. 化学进展, 2023, 35(4): 543-559.
[5] 叶淳懿, 杨洋, 邬学贤, 丁萍, 骆静利, 符显珠. 钯铜纳米电催化剂的制备方法及应用[J]. 化学进展, 2022, 34(9): 1896-1910.
[6] 王乐壹, 李牛. 从铜离子、酸中心与铝分布的关系分析不同模板剂制备Cu-SSZ-13的NH3-SCR性能[J]. 化学进展, 2022, 34(8): 1688-1705.
[7] 杨启悦, 吴巧妹, 邱佳容, 曾宪海, 唐兴, 张良清. 生物基平台化合物催化转化制备糠醇[J]. 化学进展, 2022, 34(8): 1748-1759.
[8] 贾斌, 刘晓磊, 刘志明. 贵金属催化剂上氢气选择性催化还原NOx[J]. 化学进展, 2022, 34(8): 1678-1687.
[9] 张明珏, 凡长坡, 王龙, 吴雪静, 周瑜, 王军. 以双氧水或氧气为氧化剂的苯羟基化制苯酚的催化反应机理[J]. 化学进展, 2022, 34(5): 1026-1041.
[10] 乔瑶雨, 张学辉, 赵晓竹, 李超, 何乃普. 石墨烯/金属-有机框架复合材料制备及其应用[J]. 化学进展, 2022, 34(5): 1181-1190.
[11] 刘洋洋, 赵子刚, 孙浩, 孟祥辉, 邵光杰, 王振波. 后处理技术提升燃料电池催化剂稳定性[J]. 化学进展, 2022, 34(4): 973-982.
[12] 沈树进, 韩成, 王兵, 王应德. 过渡金属单原子电催化剂还原CO2制CO[J]. 化学进展, 2022, 34(3): 533-546.
[13] 刘玉玲, 胡腾达, 李伊莲, 林洋, Borsali Redouane, 廖英杰. 嵌段共聚物薄膜快速自组装方法[J]. 化学进展, 2022, 34(3): 609-615.
[14] 牛小连, 刘柯君, 廖子明, 徐慧伦, 陈维毅, 黄棣. 基于骨组织工程的静电纺纳米纤维[J]. 化学进展, 2022, 34(2): 342-355.
[15] 楚弘宇, 王天予, 王崇臣. MOFs基材料高级氧化除菌[J]. 化学进展, 2022, 34(12): 2700-2714.
阅读次数
全文


摘要

烯烃齐聚催化反应研究进展*