화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.27, 297-306, July, 2015
Highly selective Me-ZSM-5 catalyst for methanol to propylene (MTP)
E-mail:
Methanol dehydration over ZSM-5 catalyst produces propylene and varied hydrocarbons. We synthesized high silica HZSM-5 catalyst (Si/Al = 200) and impregnated with different promoters (P, Mn, Mg and Cs). SEM, XRD, BET, FTIR and NH3-TPD techniques characterized the catalysts. The parent catalyst is stable during the impregnation and the modified catalysts include high crystallinity (>92%) and BET surface area (>303 m2/g). Mn incorporation adjusts the acidity better (strong/weak ratio = 1). Mn-ZSM-5 and P-ZSM-5 catalysts represent the highest methanol conversion (100%) and long term life time (120 h) as well as the parent catalyst. Mn-ZSM-5 catalyst represents the highest reported propylene selectivity (58.4%) over ZSM-5 catalyst in the methanol to propylene (MTP) reaction. The developed catalyst has high potential to apply in the industrial scale MTP process.
  1. Chang CD, Silvestri AJ, J. Catal., 47, 249 (1977)
  2. Jiao Y, Jiang C, Yang Z, Liu J, Zhang J, Microporous Mesoporous Mater., 181, 201 (2013)
  3. Zhang SL, Gong YJ, Zhang LL, Liu YS, Dou T, Xu J, Deng F, Fuel Process. Technol., 129, 130 (2015)
  4. Hu Z, Zhang H, Wang L, Zhang H, Zhang Y, Xu H, Shen W, Tang Y, Catal. Sci. Technol., 4, 2891 (2014)
  5. Lee SG, Kim HS, Kim YH, Kang EJ, Lee DH, Park CS, J. Ind. Eng. Chem., 20(1), 61 (2014)
  6. Sedighi M, Bahrami H, Towfighi J, J. Ind. Eng. Chem., 20(5), 3108 (2014)
  7. Moradi GR, Yaripour F, Vale-Sheyda P, Fuel Process. Technol., 91(5), 461 (2010)
  8. Mei CS, Wen PY, Liu ZC, Liu HX, Wang YD, Yang WM, Xie ZK, Hua WM, Gao Z, J. Catal., 258(1), 243 (2008)
  9. Yu Q, Meng X, Liu J, Li C, Cui Q, Microporous Mesoporous Mater., 181, 192 (2013)
  10. Liu J, Zhang C, Shen Z, Hua W, Tang Y, Shen W, Catal. Commun., 10, 1506 (2009)
  11. Abramova AV, Catal. Ind., 1, 267 (2010)
  12. Wang Y, Yuan F, J. Ind. Eng. Chem., 20(3), 1016 (2014)
  13. Meng YT, Genuino HC, Kuo CH, Huang H, Chen SY, Zhang LC, Rossi A, Suib SL, J. Am. Chem. Soc., 135(23), 8594 (2013)
  14. Zhuang JQ, Ding M, Gang Y, Yan ZM, Liu XM, Liu XC, Han XW, Bao XH, Peng X, Liu ZM, J. Catal., 228(1), 234 (2004)
  15. Zhao GL, Teng JW, Xie ZK, Jin WQ, Yang WM, Chen QL, Tang Y, J. Catal., 248(1), 29 (2007)
  16. Rebrov EV, Seijger GBF, Calis HPA, de Croon MHJM, van den Bleek CM, Schouten JC, Appl. Catal. A: Gen., 206(1), 125 (2001)
  17. Caeiro G, Magnoux P, Lopes JM, Ribeiro ER, Menezes SMC, Costa AF, Cerqueira HS, Appl. Catal. A: Gen., 314(2), 160 (2006)
  18. Blasco T, Corma A, Martinez-Triguero J, J. Catal., 237(2), 267 (2006)
  19. Lee YJ, Kim JM, Bae JW, Shin CH, Jun KW, Fuel, 88(10), 1915 (2009)
  20. Chen L, Zhu SY, Wang YM, He MY, New J. Chem., 34, 2328 (2010)
  21. Groen JC, Peffer LA, Moulijn JA, Perez-Ramirez J, Chemistry, 11, 4983 (2005)
  22. Groen JC, Peffer LAA, Moulijn JA, Perez-Ramırez J, Colloids Surf. A: Physicochem. Eng. Asp., 241, 53 (2004)
  23. Mitchell S, Michels NL, Kunze K, Perez-Ramırez J, Nat. Chem., 4, 825 (2012)
  24. Seo G, Ryoo R, J. Catal., 124, 224 (1990)
  25. Ramesh K, Jie C, Han YF, Borgna A, Ind. Eng. Chem. Res., 49(9), 4080 (2010)
  26. Othman I, Mohamed RM, Ibrahim IA, Mohamed MM, Appl. Catal. A: Gen., 299, 95 (2006)
  27. McIntosh RJ, Seddon D, Appl. Catal., 6, 307 (1983)
  28. Wei Y, He Y, Zhang D, Xu L, Meng S, Liu Z, Su BL, Microporous Mesoporous Mater., 90, 188 (2006)
  29. Zhang J, Zhang H, Yang X, Huang Z, Cao W, J. Nat. Gas Chem., 20, 266 (2011)
  30. Khatamian M, Oskoui MS, Darbandi M, Microporous Mesoporous Mater., 182, 50 (2013)
  31. Dutta P, Roy SC, Nandi LN, Samuel P, Pillai SM, Bhat BD, Ravindranathan M, J. Mol. Catal. A-Chem., 223(1-2), 231 (2004)
  32. Gil B, Mokrzycki L, Sulikowski B, Olejniczak Z, Walas S, Catal. Today, 152(1-4), 24 (2010)
  33. Campbell SM, Jiang XZ, Howe RF, Microporous Mesoporous Mater., 29, 91 (1999)
  34. Auroux A, Acidity and Basicity: Determination by Adsorption Microcalorimetry, Springer, Verlag Berlin Heidelberg, 2008, pp. 45-152.
  35. Sun Y, Yan H, Liu D, Zhao D, Catal. Commun., 9, 924 (2008)
  36. Kaeding WW, Butter SA, J. Catal., 61, 155 (1980)
  37. Vedrine JC, Auroux A, Dejaifve P, Ducarme V, Hoser H, Zhou S, J. Catal., 73, 147 (1982)
  38. Vinek H, Rumplmayr G, Lercher JA, J. Catal., 115, 291 (1989)
  39. Xue NH, Chen XK, Nie L, Guo XF, Ding WP, Chen Y, Gu M, Xie ZK, J. Catal., 248(1), 20 (2007)
  40. Yang Y, Sun C, Du J, Yue Y, Hua W, Zhang C, Shen W, Xu H, Catal. Commun., 24, 44 (2012)
  41. Xu A, Ma H, Zhang H, Ying W, Fang D, Pol. J. Chem. Technol., 15, 95 (2013)
  42. Zhu Q, Kondo JN, Setoyama T, Yamaguchi M, Domen K, Tatsumi T, Chem. Commun., 5164 (2008)
  43. Svelle S, Olsbye U, Joensen F, Bjorgen M, J. Phys. Chem. C, 111, 17981 (2007)
  44. Hadi N, Niaei A, Nabavi SR, Farzi A, Shirazi MN, Chem. Biochem. Eng. Q, 28, 53 (2014)
  45. Jiang GY, Zhang L, Zhao Z, Zhou XY, Duan AJ, Xu CM, Gao JS, Appl. Catal. A: Gen., 340(2), 176 (2008)
  46. Zhang SH, Gao ZX, Liu SY, Han YZ, Zhao YS, Chem. Eng. Technol., 34(10), 1700 (2011)
  47. Wu WZ, Guo WY, Xiao WD, Luo M, Fuel Process. Technol., 108, 19 (2013)
  48. Lee KY, Kang MY, Ihm SK, J. Phys. Chem. Solids, 73, 1542 (2012)
  49. Radu D, Glatzel P, Gloter A, Stephan O, Weckhuysen BM, de Groot FMF, J. Phys. Chem. C, 112, 12409 (2008)
  50. Yamamura M, Chaki K, Wakatsuki T, Okado H, Fujimoto K, Zeolites, 14, 643 (1994)
  51. Ramesh K, Hui LM, Han YF, Borgna A, Catal. Commun., 10, 567 (2009)
  52. Bjorgen M, Svelle S, Joensen F, Nerlov J, Kolboe S, Bonino F, Palumbo L, Bordiga S, Olsbye U, J. Catal., 249(2), 195 (2007)
  53. Bjorgen M, Joensen F, Holm MS, Olsbye U, Lillerud KP, Svelle S, Appl. Catal. A: Gen., 345(1), 43 (2008)
  54. Holm MS, Svelle S, Joensen F, Beato P, Christensen CH, Bordiga S, Bjorgen M, Appl. Catal. A: Gen., 356(1), 23 (2009)
  55. Sazama P, Dedecek J, Gabova V, Wichterlova B, Spoto G, Bordiga S, J. Catal., 254(2), 180 (2008)
  56. Regis JP, Peter KC, Edwar SS, Jule AR, Skeletal Rearrangement Reactions of Olefins, Paraffins, and Aromatics over Aluminophosphate-Based Molecular Sieve Catalysts, American Chemical Society, 1988, pp. 512-531.
  57. Kim CW, Heo NH, Seff K, J. Phys. Chem. C, 115, 24823 (2011)
  58. Bai LY, Zhou YM, Zhang YW, Liu H, Sheng XL, Ind. Eng. Chem. Res., 48(22), 9885 (2009)
  59. Esemann H, Forster H, Geidel E, Krause K, Microporous Mesoporous Mater., 6, 321 (1996)
  60. Damodaran K, Wiench JW, Cabral de Menezes SM, Lam YL, Trebosc J, Amoureux JP, Pruski M, Microporous Mesoporous Mater., 95, 296 (2006)
  61. Cabral de Menezes SM, Lam YL, Damodaran K, Pruski M, Microporous Mesoporous Mater., 95, 286 (2006)
  62. Hadjiivanov K, Ivanova E, Kantcheva M, Ciftlikli EZ, Klissurski D, Dimitrov L, Knozinger H, Catal. Commun., 3, 313 (2002)