Issue
Korean Journal of Chemical Engineering,
Vol.33, No.9, 2555-2566, 2016
C2H6/CO2 oxidative dehydrogenation (ODH) reaction on nanostructured CrAPSO-34 catalyst: One-pot hydrothermal vs. conventional hydrothermal/impregnation catalyst synthesis
A series of Cr incorporated SAPO-34 catalysts varying in Cr content and a Cr supported SAPO-34 catalyst were prepared by one-pot hydrothermal and incipient-wetness impregnation methods, respectively. The synthesized materials were characterized by XRD, FESEM, TEM, BET, EDX dot mapping, TPD-NH3 and FTIR, and tested in ethane dehydrogenation with CO2 reaction. The incorporation of Cr3+ into the SAPO-34 framework and impregnation of Cr species were proved by TEM technique. With increase in the incorporated Cr content, smaller cubic crystals and amorphous particles were obtained. However, the extra-framework species probably appeared. Chromium impregnation led to micropore blockage and surface coverage partly, resulting in morphology change somewhat, significant decrease of surface area and acidity as evidenced by FESEM, TEM, BET and TPD-NH3 analysis. However, one-pot synthesis not only preserved the structure of SAPO-34 but also allowed higher surface area, more effective surface acidity and better chromium dispersion to be achieved, features that account for superior catalytic performance and stability of directly synthesized Cr rich catalyst. The Cr incorporated SAPO-34 catalyst containing rich amount of Cr exhibited the best catalytic activity, showing 38% ethylene yield at 700 ℃ even after 5 h on-stream operation.
[References]
  1. Castro AJR, Marques SPD, Soares JM, Filho JM, Saraiva GD, Oliveira AC, Chem. Eng. J., 209, 345, 2012
  2. Botavina MA, Martra G, Agafonov YA, Gaidai NA, Nekrasov NV, Trushin DV, Coluccia S, Lapidus AL, Appl. Catal. A: Gen., 347(2), 126, 2008
  3. Deng S, Li SG, Li HQ, Zhang Y, Ind. Eng. Chem. Res., 48(16), 7561, 2009
  4. Michorczyk P, Ogonowski J, Niemczyk M, Appl. Catal. A: Gen., 374(1-2), 142, 2010
  5. Michorczyk P, Pietrzyk P, Ogonowski J, Microporous Mesoporous Mater., 161, 56, 2012
  6. Mimura N, Takahara I, Inaba M, Okamoto M, Murata K, Catal. Commun., 3, 257, 2002
  7. Shishido T, Shimamura K, Teramura K, Tanaka T, Catal. Today, 185(1), 151, 2012
  8. Takahara I, Chang WC, Mimura N, Saito M, Catal. Today, 45(1-4), 55, 1998
  9. Valenzuela RX, Bueno G, Solbes A, Sapina F, Martinez E, Corberan VC, Top. Catal., 15, 181, 2001
  10. Zhang F, Wu R, Yue Y, Yang W, Gu S, Miao C, Hua W, Gao Z, Microporous Mesoporous Mater., 145, 194, 2011
  11. Liu H, Zhang Z, Li H, Huang Q, J. Natural Gas Chem., 20, 311, 2011
  12. Michorczyk P, Ogonowski J, Kustrowski P, Chmielarz L, Appl. Catal. A: Gen., 349(1-2), 62, 2008
  13. Michorczyk P, Ogonowski J, Zenczak K, J. Mol. Catal. A-Chem., 349(1-2), 1, 2011
  14. Shi XJ, Ji SF, Wang K, Catal. Lett., 125(3-4), 331, 2008
  15. Blasco T, Nieto JM, Appl. Catal. A: Gen., 157(1-2), 117, 1997
  16. Setnicka M, Bulanek R, Capek L, Cicmanec P, J. Mol. Catal. A-Chem., 344(1-2), 1, 2011
  17. Piumetti M, Bonelli B, Massiani P, Dzwigaj S, Rossetti I, Casale S, Armandi M, Thomas C, Garrone E, Catal. Today, 179(1), 140, 2012
  18. Madeira LM, Portela MF, Catal. Rev.-Sci. Eng., 44(2), 247, 2002
  19. Dasireddy VDBC, Singh S, Friedrich HB, Appl. Catal. A: Gen., 421-422, 58, 2012
  20. Lisi L, Marchese L, Pastore HO, Frache A, Ruoppolo G, Russo G, Top. Catal., 22, 95, 2003
  21. Marchese L, Frache A, Gatti G, Coluccia S, Lisi L, Ruoppolo G, Russo G, Pastore HO, J. Catal., 208(2), 479, 2002
  22. Flick DW, Huff MC, Appl. Catal. A: Gen., 187(1), 13, 1999
  23. Zhu Q, Kondo JN, Ohnuma R, Kubota Y, Yamaguchi M, Tatsumi T, Microporous Mesoporous Mater., 112, 153, 2008
  24. Berube F, Kleitz F, Kaliaguine S, J. Mater. Sci., 44(24), 6727, 2009
  25. Rajic N, Stojakovic D, Hocevar S, Kaucic V, Zeolites, 13, 384, 1993
  26. Zhu Z, Hartmann M, Kevan L, Chem. Mater., 12, 2781, 2000
  27. Tan J, Liu Z, Bao X, Liu X, Han X, He C, Zhai R, Microporous Mesoporous Mater., 53, 97, 2002
  28. Wang T, Lu X, Yan Y, Microporous Mesoporous Mater., 168, 155, 2013
  29. Ye L, Cao F, Ying W, Fang D, Sun Q, J. Porous Mat., 18, 225, 2011
  30. Wojciech KJ, Lana IGD, J. Chem. Soc.-Faraday Trans., 93, 2583, 1997
  31. Izadbakhsh A, Farhadi F, Khorasheh F, Sahebdelfar S, Asadi M, Feng YZ, Appl. Catal. A: Gen., 364(1-2), 48, 2009
  32. Liu G, Tian P, Zhang Y, Li J, Xu L, Meng S, Liu Z, Microporous Mesoporous Mater., 114, 416, 2008
  33. Izadbakhsh A, Farhadi F, Khorasheh F, Sahebdelfar S, Asadi M, Yan ZF, Microporous Mesoporous Mater., 126, 1, 2009
  34. Aghaei E, Haghighi M, J. Porous Mat., 22, 187, 2015
  35. Charghand M, Haghighi M, Aghamohammadi S, Ultrason. Sonochem., 21, 1827, 2014
  36. Aghaei E, Haghighi M, Microporous Mesoporous Mater., 196, 179, 2014
  37. Ivanova T, Gesheva K, Cziraki A, Szekeres A, Vlaikova E, J. Phys. Condens. Series, 113, 1, 2008
  38. Mahmoud HR, J. Mol. Catal. A-Chem., 392, 216, 2014
  39. Liu G, Tian P, Li J, Zhang D, Zhou F, Liu Z, Microporous Mesoporous Mater., 111, 143, 2008
  40. Rahmani F, Haghighi M, J. Natural Gas Sci. Eng., 27(Part 3), 1684, 2015
  41. Aghamohammadi S, Haghighi M, Charghand M, Mater. Res. Bull., 50, 462, 2014
  42. Rahmani F, Haghighi M, Amini M, J. Ind. Eng. Chem., 31, 142, 2015
  43. Allahyari S, Haghighi M, Ebadi A, Hosseinzadeh S, Energy Conv. Manag., 83, 212, 2014
  44. Khoshbin R, Haghighi M, Chin. J. Inorg. Chem., 28, 1967, 2012
  45. Aghaei E, Haghighi M, Powder Technol., 269, 358, 2015
  46. Aghamohammadi S, Haghighi M, Chem. Eng. J., 264, 359, 2015
  47. Charghand M, Haghighi M, Saedy S, Aghamohammadi S, Adv. Powder Technol., 25(6), 1728, 2014
  48. Sadeghpour P, Haghighi M, Particuology, 19, 69, 2015
  49. Debasis D, Panchanan P, J. Am. Ceram. Soc., 89, 1014, 2004
  50. Sajjadi SM, Haghighi M, Eslami AA, Rahmani F, J. Sol-Gel Sci. Technol., 67, 601, 2013
  51. Abdollahifar M, Haghighi M, Babaluo AA, Talkhoncheh SK, Ultrason. Sonochem., 31, 173, 2016
  52. Goula MA, Lemonidou AA, Efstathiou AM, J. Catal., 161(2), 626, 1996
  53. Xu BJ, Zheng B, Hua WM, Yue YH, Gao Z, J. Catal., 239(2), 470, 2006
  54. Chen SW, Qin ZF, Wang GF, Dong M, Wang JG, Fuel, 109, 43, 2013
  55. Urlan F, Marcu IC, Sandulescu I, Catal. Commun., 9, 2403, 2008
  56. Zhu QJ, Takiguchi M, Setoyama T, Yokoi T, Kondo JN, Tatsumi T, Catal. Lett., 141(5), 670, 2011