English
新闻公告
More
化学进展 2012, Vol. 24 Issue (07): 1252-1261 前一篇   后一篇

• 综述与评论 •

分子筛在加氢脱硫催化剂深度脱硫方面的应用

尹海亮1, 周同娜2, 柴永明3, 柳云骐3, 刘晨光*3   

  1. 1. 中国石油大学(华东)重质油国家实验室 科学技术研究院 东营 257061;
    2. 东营市环境保护局 东营 257300;
    3. 中国石油大学(华东)重质油国家实验室 青岛 266555
  • 收稿日期:2011-10-01 修回日期:2011-12-01 出版日期:2012-07-24 发布日期:2012-06-30
  • 通讯作者: 刘晨光 E-mail:liucg@upc.edu.cn
  • 基金资助:

    国家重点基础研究发展计划(973)项目(No. 2010CB226905)资助

Application of Zeolites in Hydrodesulfurization Catalysts for Deep Desulfurization

Yin Hailiang1, Zhou Tongna2, Chai Yongming3, Liu Yunqi3, Liu Chenguang3   

  1. 1. State Key Laboratory of Heavy Oil Processing, Academy of Science & Technology, China University of Petroleum(East China), Dongying 257061, China;
    2. Environmental Protection Agency of Dongying, Dongying 257300, China;
    3. State Key Laboratory of Heavy Oil Processing, China University of Petroleum(East China), Qingdao 266555, China
  • Received:2011-10-01 Revised:2011-12-01 Online:2012-07-24 Published:2012-06-30
本文综述了分子筛对加氢脱硫催化剂深度脱硫性能的影响,对分子筛基加氢脱硫催化剂上涉及含硫大分子4,6-二甲基二苯并噻吩(4,6-DMDBT)加氢脱硫反应的研究进展作了总结。主要介绍了微孔分子筛、介孔分子筛、微介孔复合分子筛和纳米分子筛在加氢脱硫催化剂针对4,6-DMDBT加氢脱硫反应方面的应用进展。简要介绍了分子筛基加氢脱硫催化剂上4,6-DMDBT加氢脱硫反应的反应途径、反应机理及抑制过度裂化反应的措施。最后展望了该研究领域的发展前景。
The recent progress in the application of zeolites in hydrodesulfurization catalysts for the deep desulfurization is reviewed in this paper, including microporous zeolite, mesoporous zeolite, micro-mesoporous zeolite and nano-zeolite. The reaction pathways and mechanisms of the hydrodesulfurization of 4,6-DMDBT and the measures to inhibit the overcracking reactions of desulfurization products over hydrodesulfurization catalysts containing zeolites are described briefly. Finally, challenges and prospects for further development of this field are presented. Contents
1 Introduction
2 The application of zeolites in hydrodesulfurization catalysts for the deep desulfurization
2.1 The application of microporous zeolites
2.2 The application of mesoporous zeolites
2.3 The application of micro-mesoporous zeolites
2.4 The application of nano-zeolites
3 The new reaction pathways of the hydrodesulfurization of 4,6-DMDBT over hydrodesulfurization catalysts containing zeolites
4 The new reaction mechanisms of hydrodesulfurization of 4,6-DMDBT over hydrodesulfurization catalysts containing zeolites
4.1 Isomerization reaction mechanism
4.2 Transalkylation reaction mechanism
4.3 Cracking reaction mechanism
4.4 Other reaction mechanism
5 The measures to inhibit the overcracking reactions of desulfurization products
6 Summary and perspective

中图分类号: 

()
[1] 贺华(He H), 罗资琴(Luo Z Q). 石化技术与应用(Petrochem. Technol. Appl.). 2002, 20(3): 202-205
[2] 曹湘洪(Cao X H). 科学中国人(Scientific Chinese). 2006, 2: 22-28
[3] Bej S K, Maity S K, Turaga U T. Energy Fuels, 2004, 18(5): 1227-1237
[4] Segawa K, Takahashi K, Satoh S. Catal. Today, 2000, 63: 123-131
[5] Meille V, Schulz E, Lemaire M, Vrinat M. Appl. Catal. A: Gen., 1999, 187: 179-186
[6] Schulz H, Bohringer W, Waller P, Ousmanov F. Catal. Today, 1999, 49: 87-97
[7] Meille V, Schulz E, Lemaire M, Vrinat M. J. Catal., 1997, 170: 29-36
[8] Bataille F, Lemberton J L, Michaud P, Perot G, Vrinat M, Lemaire M, Schulz E, Breysse M, Kasztelan S. J. Catal., 2000, 191(2): 409-422
[9] Michaud P, Lemberton J L, Pérot G. Appl. Catal. A: Gen., 1998, 169: 343-353
[10] Lecrenay E, Sakanishi K, Mochida I. Catal. Today, 1997, 39: 13-20
[11] Ozaki H. Catal. Surv. Jpn., 1997, 1(1): 143-155
[12] Landau M V, Berger D, Herskowitz M. J. Catal., 1996, 159: 236-245
[13] Koizumi N, Hamade Y, Yoshida S, Yamada M. Appl. Catal. A: Gen., 2010, 383(1/2): 79-88
[14] Robinson W R A M, van Veen J A R, de Beer V H J. Fuel Process. Technol., 1999, 61(1/2): 103-116
[15] Bataille F, Lemberton J L, Pérot G, Leyrit P, Cseri T, Marchal N, Kasztelan S. Appl. Catal. A: Gen., 2001, 220: 191-205
[16] Turaga U T, Ma X, Song C. Catal. Today, 2003, 86: 265-275
[17] Song C, Ma X. Appl. Catal. B: Environ., 2003, 41(2): 207-238
[18] Turaga U T, Song C. Catal. Today, 2003, 86: 129-140
[19] Rozanska X, Saintigny X, van Santen R A, Clemendot S, Hutschka F. J. Catal., 2002, 208: 89-99
[20] Richard F, Boita T, Pérot G. Appl. Catal. A: Gen., 2007, 320: 69-79
[21] Isoda T, Takase Y, Kusakabe K, Morooka S. Energy Fuels, 2000, 14: 585-590
[22] Isoda T, Nagao S, Ma X, Korai Y, Mochida I. Energy Fuels, 1996, 10: 1078-1082
[23] Mizutani H. Appl. Catal. A: Gen., 2005, 295: 193-200
[24] Ding L, Zheng Y, Zhang Z, Ring Z, Chen J. Appl. Catal. A: Gen., 2007, 319: 25-37
[25] Klimova T, Solis D, Ramirez J, Lopez A A. Stud. Surf. Sci. Catal., 2002, 143: 267-275
[26] Solís D, López A A, Ramírez J, Klimova T. Catal. Today, 2006, 116: 469-477
[27] Choi K H, Kunisada N, Korai Y, Mochida I, Nakano K. Catal. Today, 2003, 86: 277-286
[28] Kunisada N, Choi K H, Korai Y, Mochida I, Nakano K. Appl. Catal. A: Gen., 2004, 269: 43-51
[29] Kunisada N, Choi K H, Korai Y, Mochida I, Nakano K. Appl. Catal. A: Gen., 2004, 276: 51-60
[30] Ding L, Zheng Y, Zhang Z, Ring Z, Chen J. J. Catal., 2006, 241: 435-445
[31] 赵玉琢(Zhao Y Z), 方向晨(Fang X C), 谭汉森(Tan H S). 当代化工(Cont. Chem. Ind.), 2007, 36(4): 367-370
[32] Klimova T, Calderón M, Ramírez J. Appl. Catal. A: Gen., 2003, 240: 29-40
[33] Chiranjeevi T, Kumar P, Rana M S, Murali D G, Prasada R T S R. J. Mole. Catal. A: Chem., 2002, 181: 109-117
[34] Chiranjeevi T, Muthu K G, Gupta J K, Murali D G. Catal. Commun., 2005, 6: 101-106
[35] Klimova T, Lizama L, Amezcua J C, Roquero P, Terrés E, Navarrete J, Domínguez J M. Catal. Today, 2004, 98: 141-150
[36] Muthu K G, Garg S, Soni K, Kumar M, Sharma L D, Rama R K S. Appl. Catal. A: Gen., 2006, 305: 123-129
[37] Sun Y, Yue Y, Gao Z. Appl. Catal. A: Gen., 1997, 161: 121-127
[38] 王瑶(Wang Y), 王安杰(Wang A J), 陈永英(Chen Y Y), 李翔(Li X), 姚平经(Yao P J). 石油学报(石油加工) (Acta Petrolei Sinica, Petroleum Processing Section), 2003, 19(6): 24-28
[39] Wang A, Wang Y, Kabe T, Chen Y, Ishihara A, Qian W, Yao P. J. Catal., 2002, 210: 319-327
[40] Herrera J M, Reyes J, Roquero P, Klimova T. Micro. Meso. Mater., 2005, 83: 283-291
[41] Oyama S T, Lee Y K. J. Catal., 2008, 258: 393-400
[42] Abu I I, Smith K J. Appl. Catal. A: Gen., 2007, 328: 58-67
[43] Teng Y, Wang A, Li X, Xie J, Wang Y, Hu Y. J. Catal., 2009, 266: 369-379
[44] Klimova T, Reyes J, Gutiérrez O, Lizama L. Appl. Catal. A: Gen., 2008, 335: 159-171
[45] Gutiérrez O Y, Pérez F, Fuentes G A, Bokhimi X, Klimova T. Catal. Today, 2008, 130: 292-301
[46] Mokaya R, Jones W. Chem. Commun., 1997, 2185-2186
[47] Jana S K, Kugita T, Namba S. Appl. Catal. A: Gen., 2004, 266: 245-250
[48] Mokaya R. J. Catal., 2000, 193: 103-107
[49] Macías G, Ramírez J, Alejandre A G, Cuevas R. Catal. Today, 2008, 133/135: 261-266
[50] Macías G, Ramírez J, Alejandre A G. Catal. Today, 2009, 148: 36-41
[51] Gutiérrez O Y, Valencia D, Fuentes G A, Klimova T. J. Catal., 2007, 249: 140-153
[52] Gutiérrez O Y, Fuentes G A, Salcedo C, Klimova T. Catal. Today, 2006, 116: 485-497
[53] Liu Y, Zhang W, Pinnavaia T J. J. Am. Chem. Soc., 2000, 122: 8791-8792
[54] Liu Y, Pinnavaia T J. J. Mater. Chem., 2002, 12: 3179-3190
[55] Liu Y, Pinnavaia T J. J. Mater. Chem., 2004, 14: 1099-1103
[56] Liu Y, Zhang W, Pinnavaia T J. Ang. Chem. Int. Ed., 2001, 40: 1255-1258
[57] Zhang Z T, Han Y, Zhu L, Wang R W, Yu Y, Qiu S L, Zhao D Y, Xiao F S. Ang. Chem. Int. Ed., 2001, 40: 1258-1262
[58] Han Y, Wu S, Sun Y Y, Li D S, Xiao F S, Liu J, Zhang X Z. Chem. Mater., 2002, 14: 1144-1148
[59] 徐玲(Xu L), 徐海燕(Xu H Y), 吴通好(Wu T H). 催化学报(Chinese J. Catal.), 2006, 27(12): 1149-1158
[60] Zeng S, Blanchard J, Breysse M, Shi Y, Su X, Nie H, Li D. Appl. Catal. A: Gen., 2006, 298: 88-93
[61] Camblor M A, Corma A, Martinez A, Martinez S V, Valencia S. J. Catal., 1998, 179: 537-547
[62] Landau M V, Vradman L, Valtchev V, Lezervant J, Liubich E, Talianker M. Ind. Eng. Chem. Res., 2003, 42: 2773-2782
[63] Aguiar E F S, Valle M L M, Silva M P, Silvat D F. Zeolites, 1995, 15: 620-623
[64] Ding L, Zheng Y, Yang H, Parviz R. Appl. Catal. A: Gen., 2009, 353: 17-23
[65] 鞠雪艳(Ju X Y). 中国石油大学硕士论文(Master Dissertation of China Univ. Petrol.), 2009
[66] Yin H L, Zhou T N, Liu Y Q, Chai Y M, Liu C G. J. Nat. Gas Chem., 2011, 20(4): 441-448
[67] 吴新民(Wu X M), 吴杰(Wu J), 龚良发(Gong L F). 石油学报(石油加工) (Acta Petrolei Sinica, Petroleum Processing Section), 2007, 23(1): 92-95
[68] Perot G. Cat. Today, 2003, 86: 111-128
[69] Isoda T, Nagao S, Korai Y, Mochida I. ACS 212th National Meeting (Orlando) ACS Div. Petro. Chem., Inc. Pre., 1996, 41: 559-562
[70] Morin S, Gnep N S, Guisnet M. J. Catal., 1996, 159: 296-304
[71] Prater C D, Lago R M. Adv. Catal., 1956, 8: 293-339
[72] Lecrenay E, Mochida I. Stud. Surf. Sci. Catal., 1997, 106: 333-342
[73] Breysse M, Hédoire C E, Louis C, Pérot G. Stud. Surf. Sci. Catal. 2003, 145: 115-120
[74] 韩崇仁(Xue C R). 加氢裂化工艺与工程(Hydrocracking Process and Engineering). 北京: 中国石化出版社(China Petrochemical Press), 2001. 98-101
[75] Alvarez F, Ribeiro F R, Perot G, Thomazeau C, Guisnet M. J. Catal., 1996, 162(2): 179-189
[76] 毛以朝(Mao Y C), 聂红(Nie H), 李毅(Li Y). 石油炼制与化工(Pet. Processing Petrolei.), 2005, 36(6): 1-4
[77] Decanio S J, Sohn J R, Fritz P O, Lunsford J H. J. Catal., 1986, 101(1): 132-141
[78] Fritz P O, Lunsford J H. J. Catal., 1989, 118(1): 85-98
[79] Gates B C, Katzer J R, Schuit G C A. Chemistry of Catalytic Processes. New York: McGraw-Hill Book Company. 1979. 68-78
[80] 任亮(Ren L), 毛以朝(Mao Y C), 刘坤红(Liu K H), 聂红(Nie H). 石油学报(石油加工) (Acta Petrolei Sinica, Petrol. Process. Section), 2009, 25(1): 31-35
[81] 师希娥(Shi X E), 翟尚儒(Zhai S R), 戴立益(Dai L Y), 单永奎(Shan Y K), 何鸣元(He M Y), 魏伟(Wei W), 吴东(Wu D), 孙予罕(Sun H Y). 物理化学学报(Acta. Phys. Chim. Sin.), 2004, 20(3): 265-270
[82] Donk S, Janssen A H, Bitter J H, Jong K P. Catal. Rev., 2003, 45(2): 297-319
[83] Abramova A V, Slivinskii E V, Goldfarb Y Y, Panin A A. Kinet. Catal., 2005, 46(5): 758-769
[84] Corma A, Martinez A, Martinezsoria V, Monton J B. J. Catal., 1995, 153(1): 25-31
[85] Byambajav E, Ohtauka Y. Appl. Catal. A, 2003, 252(1): 193-204
[86] Barbosa F A, Santos A C B, Silva M I P, Stumbo A M. Catal. Today, 2004, 98(1/2): 109-113
[87] 刘百军(Liu B J), 冯乐刚(Feng L G), 侯辉娟(Hou H J), 高山松(Gao S S), 查显俊(Cha X J). 催化学报(Chin. J. Cat.), 2007, 28(1): 34-38
[88] 黄海燕(Huang H Y), 申宝剑(Shen B J), 雒士军(Luo S J), 徐春明(Xu C M), 潘惠芳(Pan H F). 石油化工(Petrochemical Technology), 2002, 31(7): 510-514
[89] Zhang F, Yan Y, Yang H, Meng Y, Yu C, Tu B, Zhao D. J. Phys. Chem. B, 2005, 109(18): 8723-8732
[90] 张学军(Zhang X J), 张志华(Zhang Z H), 王宗贤(Wang Z X), 谷振生(Gu Z S). 化工进展(Chem. Ind. Eng. Prog.), 2009, 28(2): 267-271
[91] 吕倩(Lv Q), 孙发民(Sun F M), 夏恩冬(Xia E D), 宋金鹤(Song J H), 葛腾杰(Ge T J). 炼油技术与工程(Pet. Processing Petrolei.), 2010, 40(9): 54-57
[92] 马守涛(Ma S T), 田然(Tian R), 戴宝琴(Dai B Q), 孙发民(Sun F M). 工业催化(Ind. Catal.), 2009, 17(6): 22-26
[1] 陈萍, 谢冠群, 罗孟飞. 巴豆醛气相选择性加氢催化剂[J]. 化学进展, 2012, 24(01): 17-30.
[2] 许宜铭. 环境污染物的光催化降解:活性物种与反应机理*[J]. 化学进展, 2009, 21(0203): 524-533.
[3] 林华香,王绪绪,付贤智. TiO2表面羟基及其性质*[J]. 化学进展, 2007, 19(05): 665-670.
[4] 陈伟锋,史壮志,袁宇,颜朝国. 不对称自催化反应[J]. 化学进展, 2007, 19(04): 456-463.
[5] 刘大鹏,李永丹. 抗硫性芳烃加氢催化剂研究进展*[J]. 化学进展, 2004, 16(06): 891-.
[6] 李德宝,马玉刚,齐会杰,李文怀,孙予罕,钟炳. CO加氢合成低碳混合醇催化体系研究新进展[J]. 化学进展, 2004, 16(04): 584-.
[7] 马宇春,石峰,邓友全. 金催化剂及其在有机反应中的应用研究进展*[J]. 化学进展, 2003, 15(05): 385-.
[8] 王华,刘中民. 组合多相催化研究进展*[J]. 化学进展, 2003, 15(04): 256-.
[9] 李晓红,李灿. 多相不对称催化氢化研究进展*[J]. 化学进展, 2003, 15(03): 204-.
[10] 鲁福身,晁建平,杨春育. 均相催化多相化新进展--氟两相体系[J]. 化学进展, 2001, 13(03): 192-.
[11] 刘纲,邵瑞链,马红敏. 不对称自动催化研究进展[J]. 化学进展, 2001, 13(03): 198-.
[12] 王梅,何仁,钱明星. 多氮螯合配位后过渡金属络合物烯烃聚合催化剂[J]. 化学进展, 2001, 13(02): 102-.
[13] 封麟先,王立,张普玉. 茂金属/硼化合物烯烃聚合催化体系研究进展[J]. 化学进展, 2001, 13(02): 108-.
[14] 袁忠勇,周午纵,李赫. 沸石类分子筛合成研究新进展[J]. 化学进展, 2001, 13(02): 113-.
[15] 彭少逸,杨文书,钟炳,李文怀,银董红. 钴基催化剂在Fischer-Tropsch合成烃中的研究进展[J]. 化学进展, 2001, 13(02): 118-.