Search / Korean Journal of Chemical Engineering
Korean Chemical Engineering Research,
Vol.51, No.1, 1-9, 2013
제올라이트 촉매상에서의 알킬 방향족 화합물 전환 반응기구에 대한 최근 연구 동향
Recent Advances in the Mechanistic Studies of Alkylaromatic Conversions over Zeolite Catalysts
제올라이트 촉매를 이용한 알킬 방향족 화합물의 전환은 현대 석유화학 산업에서 큰 비중을 차지한다. 본 총설에서는 제올라이트의 구조적 ·물리화학적 특성에 따른 알킬 방향족 화합물 전환 반응의 기구에 대해 고찰하였다. 제올라이트의 형상선택성은 알킬 방향족 화합물 전환에 있어서 반응중간체의 생성을 조절함으로써 반응 기구 및 생성물 분포에 직접적인 영향을 미친다. 다양한 알킬 방향족 화합물의 전환 반응에 대하여 반응 중간체의 구조 및 역할에 대한 고찰을 통해 지금까지 알려진 반응기구들을 정리하였다. 아울러 제올라이트 촉매를 기초로 하는 향후 석유화학 공정 개발에 대한 전망을 기술하였다.
The transformation of alkylaromatic hydrocarbons using zeolite catalysts play big part in the current petrochemical industry. Here we review recent advances in the understanding of the reaction mechanisms of various alkylaromatic conversions with respect to the structural and physicochemical properties of zeolite catalysts employed. Indeed, the shape-selective nature of zeolite catalysts determines the type of reaction intermediates and hence the prevailing reaction mechanism together with the product distribution. The prospect of zeolite catalysis in the developement of more efficient petrochemical processes is also described.
[References]
  1. Tsai TC, Liu SB, Wang IK, Appl. Catal. A: Gen., 181(2), 355, 1999
  2. Das J, Halgeri AB, Catal. Surv. Asia., 7(1), 3, 2003
  3. Vermeiren W, Gilson JP, Top. Catal., 52, 1131, 2009
  4. Baerlocher C, McCusker LB, “Database of Zeolite Structure, http://www.iza-structure.org/data-bases/”.
  5. Al-Khattaf S, Akhtar MN, Odedairo T, Aitani A, Tukur NM, Kubu M, Musilova-Pavlackova Z, Cejka J, Appl. Catal. A: Gen., 394(1-2), 176, 2011
  6. Min HK, Cha SH, Hong SB, ACS Catal., 2, 971, 2012
  7. Huang J, Jiang Y, Marthala VRR, Hunger M, J. Am. Chem. Soc., 130(38), 12642, 2008
  8. Min HK, Chidambaram V, Hong SB, J. Phys. Chem. C., 114, 1190, 2010
  9. Min HK, Hong SB, J. Phys. Chem. C., 115, 16124, 2011
  10. Xiong YS, Rodewald PG, Chang CD, J. Am. Chem. Soc., 117(37), 9427, 1995
  11. Corma A, Sastre E, J. Catal., 129, 177, 1991
  12. Palomares AE, Edermirth G, Lercher JA, J. Catal., 168(2), 442, 1997
  13. Svelle S, Olsbye U, Lillerud KP, Kolboe S, Bjorgen M, J. Am. Chem. Soc., 128(17), 5618, 2006
  14. Millini R, Perego C, Top. Catal., 52, 42, 2009
  15. Clark LA, Sierka M, Sauer J, J. Am. Chem. Soc., 126(3), 936, 2004
  16. Weitkamp J, Ernst S, Catal. Today., 19, 107, 1994
  17. Olson DH, Haag WO, ACS Symp. Ser., 248, 275, 1984
  18. Babu GP, Santra M, Shiralkar VP, Ratnasamy PJ, J.Catal., 100, 458, 1986
  19. Rane SJ, Chakrabarty DK, Appl. Catal., 75, 281, 1991
  20. Sastre E, Corma A, Jajula F, Figueras F, Perez-Pariente J, J.Catal., 126, 457, 1990
  21. Adair B, Chen CY, Wan KT, Davis ME, Micropor. Mater., 7, 261, 1996
  22. Jones CW, Zones SI, Davis ME, Micropor.Mesopor, Mater., 28, 471, 1999
  23. Jones CW, Zones SI, Davis ME, Appl. Catal. A: Gen., 181(2), 289, 1999
  24. Degnan TF, J. Catal., 216(1-2), 32, 2003
  25. Wei JJ, J. Catal., 76, 433, 1982
  26. Morin S, Gnep NS, Guisnet M, J. Catal., 159(2), 296, 1996
  27. Guisnet M, Gnep NS, Morin S, Micropor. Mesopor.Mater., 35-36, 47, 2000
  28. Chen NY, Kaeding WW, Dwyer FG, J. Am. Chem. Soc., 101, 6783, 1979
  29. Hong SB, Min HK, Shin CH, Cox PA, Warrender SJ, Wright PA, J. Am. Chem. Soc., 129(35), 10870, 2007
  30. Roger HP, Moller KP, O’Connor CT, Micropor. Mater., 8, 151, 1997
  31. Das J, Bhat YS, Halgeri AB, Catal. Lett., 23(1-2), 161, 1994
  32. Roger HP, Moller KP, O'Connor CT, J. Catal., 176(1), 68, 1998
  33. Park SH, Lee JH, Rhee HK, Korean J. Chem. Eng., 17(2), 198, 2000
  34. Cejka J, Kotrla J, Krejci A, Appl. Catal. A: Gen., 277(1-2), 191, 2004
  35. Chao KJ, Leu LJ, Zeolites., 9, 193, 1989
  36. Matsuda T, Asanuma M, Kikuchi E, Appl.Catal., 38, 289, 1988
  37. Wang I, Tsai TS, Huang ST, Ind. Eng. Chem. Res., 29, 2005, 1990
  38. Cartraoul P, Cointot A, Gnep NS, Guisnet M, Joly G, Tejada J, Appl. Catal., 21, 85, 1986
  39. Cejka J, Wichterlova B, Catal. Rev.-Sci. Eng., 44(3), 375, 2002
  40. Dumitriu E, Hulea V, Kaliaguine S, Huang MM, Appl. Catal. A: Gen., 135(1), 57, 1996
  41. Krejci A, Al-Khattaf S, Ali MA, Bejblova M, Cejka J, Appl. Catal. A: Gen., 377(1-2), 99, 2010
  42. Lee YK, Park SH, Rhee HK, Catal. Today, 44(1-4), 223, 1998
  43. Halgeri AB, Prasada Rao TSR, Stud. Surf. Sci. Catal., 24, 667, 1985
  44. Hulea V, Bilba B, Lupascu M, Dumitriu E, Nibou D, Lebaili S, Kessler H, Micropor. Mater., 8, 201, 1997
  45. Dumitriu E, Guimon C, Hulea V, Lutic D, Fechete I, Appl. Catal. A: Gen., 237(1-2), 211, 2002
  46. Fernandes LD, Monteiro JLF, Sousa-Aguiar EF, Martinez A, Corma A, J. Catal., 177(2), 363, 1998
  47. Moreau F, Bernard S, Gnep NS, Lacombe S, Merlen E, Guisnet M, J. Catal., 202(2), 402, 2001
  48. Moreau F, Moreau P, Gnep NS, Magnoux P, Lacombe S, Guisnet M, Micropor. Mesopor. Mater., 90, 327, 2006
  49. Robschlager KH, Christoffel EG, Ind. Eng. Chem. Prod. Res.Dev., 18(4), 347, 1979
  50. Arsenova N, Haag WO, Karge HG, Stud. Surf. Sci. Catal., 94, 441, 1995
  51. Weiβ U, Weihe M, Hunger M, Karge HG, Weitkamp J, Stud. Surf. Sci. Catal., 105, 973, 1997
  52. Arsenova-Hartel N, Bludau H, Haag WO, Karge HG, Micropor. Mesopor. Mater., 35-36, 113, 2000
  53. Huang J, Jiang YJ, Marthala VRR, Bressel A, Frey J, Hunger M, J. Catal., 263(2), 277, 2009
  54. De Vos DE, Ernst S, Perego C, O’Connor CT, Stocker M, Micropor. Mesopor. Mater., 56, 185, 2002
  55. Streitwieser A, Reif L, J. Am. Chem. Soc., 82, 5003, 1960
  56. Amelse JA, Stud. Surf. Sci. Catal., 38, 165, 1988
  57. Kim BH, Lee JG, Yim T, Kim HJ, Lee HY, Kim YG, Tetrahedron Lett., 47, 7727, 2006
  58. Millini R, Frigerio F, Bellussi G, Pazzuconi G, Perego C, Pollesel P, Romano U, J. Catal., 217(2), 298, 2003