화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.47, 348-359, March, 2017
Extractive-oxidative removals of dibenzothiophene and quinoline using vanadium substituted Dawson emulsion catalyst and ionic liquid based solvents
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Extractive-catalytic oxidative desulfurization (ECODS) of model diesel using vanadium substituted Dawson-type emulsion catalyst has been investigated for the first time. At different operational conditions, ECODS was studied using selected solvents and [cetrimonium]11P2W13V5O62 by means of Taguchi methods Under the optimized conditions (ionic liquids/oil volume ratio 1:8, 7.5 g/L catalyst, O/S mole ratio 8, T = 70 °C after 45 min) 94% of sulfur and 100% of quinoline were removed. It is worth mentioning that in the presence of catalyst, solvent/oil volume decreases by 45% while sulfur removal increases by 54% compared to extraction desulfurization.
  1. Moradi P, Parvari M, Chem. Eng. Technol., 34(5), 803 (2011)
  2. Moradi P, Parvari M, Chem. Eng. Jpn., 44(9), 643 (2011)
  3. Nikulshin P, Mozhaev A, Lancelot C, Blanchard P, Payen E, Lamonier C, C. R. Acad. Sci. II C, 19(10), 1276 (2016)
  4. Chen XC, Yuan S, Abdeltawab AA, Al-Deyab SS, Zhang JW, Yu L, Yu GR, Sep. Purif. Technol., 133, 187 (2014)
  5. Nagai M, Tung NT, Adachi Y, Kobayashi K, Catal. Today, 271, 91 (2016)
  6. Trakarnpruk W, Rujiraworawut K, Fuel Process. Technol., 90(3), 411 (2009)
  7. Campos-Martin JM, Capel-Sanchez MC, Perez-Presas P, Fierro JLG, J. Chem. Technol. Biotechnol., 85(7), 879 (2010)
  8. Ribeiro S, Barbosa ADS, Gomes AC, Pillinger M, Goncalves IS, Cunha-Silva L, Balula SS, Fuel Process. Technol., 116, 350 (2013)
  9. Capel-Sanchez MC, Perez-Presas P, Campos-Martin JM, Fierro JLG, Catal. Today, 157(1-4), 390 (2010)
  10. Gao SR, Yu GR, Abro R, Abdeltawab AA, Al-Deyab SS, Chen XC, Fuel, 173, 164 (2016)
  11. Lu H, Li P, Deng C, Ren W, Wang S, Liu P, Zhang H, Chem. Commun., 51, 10703 (2015)
  12. Capel-Sanchez MC, Campos-Martin JM, Fierro JLG, Energy Environ. Sci., 3, 328 (2010)
  13. Capel-Sanchez MC, Campos-Martin JM, Fierro JLG, Green Chem., 6, 557 (2004)
  14. Rafiee E, Rezaei S, J. Taiwan Inst. Chem. Eng., 61, 174 (2016)
  15. Jiang W, Zhu WS, Chang YH, Chao YH, Yin S, Liu H, Zhu FX, Li HM, Chem. Eng. J., 250, 48 (2014)
  16. Tian YJ, Yao Y, Zhi YH, Yan LJ, Lut SX, Energy Fuels, 29(2), 618 (2015)
  17. Bhutto AW, Abro R, Gao S, Abbas T, Chen X, Yu G, J. Taiwan Inst. Chem. Eng., 62, 84 (2016)
  18. Xu J, Zhao S, Ji Y, Song YF, Chem.-Eur. J., 19, 709 (2013)
  19. Juliao D, Gomes AC, Pillinger M, Cunha-Silva L, de Castro B, Goncalves IS, Balula SS, Fuel Process. Technol., 131, 78 (2015)
  20. Ding Y, Zhu W, Li H, Jiang W, Zhang M, Duan Y, Chang Y, Green Chem., 13, 1210 (2011)
  21. Li HM, Jiang X, Zhu WH, Lu JD, Shu HM, Yan YS, Ind. Eng. Chem. Res., 48(19), 9034 (2009)
  22. Ge JH, Zhou YM, Yang Y, Xue MW, Ind. Eng. Chem. Res., 50(24), 13686 (2011)
  23. Xu J, Zhao S, Ji Y, Song YF, Chem.-Eur. J., 19, 709 (2013)
  24. Lu HY, Ren WZ, Wang HY, Wang Y, Chen W, Suo ZH, Appl. Catal. A: Gen., 453, 376 (2013)
  25. Xu D, Zhu W, Li H, Zhang J, Zou F, Shi H, Yan Y, Energy Fuels, 23, 5929 (2009)
  26. He LN, Li HM, Zhu WS, Guo JX, Jiang X, Lu JD, Yan YS, Ind. Eng. Chem. Res., 47(18), 6890 (2008)
  27. Lu HY, Deng CL, Ren WZ, Yang X, Fuel Process. Technol., 119, 87 (2014)
  28. Zhang HX, Gao JJ, Meng H, Li CX, Ind. Eng. Chem. Res., 51(19), 6658 (2012)
  29. Li C, Li D, Zou S, Li Z, Yin J, Wang A, Cui Y, Yao Z, Zhao Q, Green Chem., 15, 2793 (2013)
  30. Zhang Q, De Oliveira Vigier K, Royer S, Jerome F, Chem. Soc. Rev., 41, 7108 (2012)
  31. Yin J, Wang J, Li Z, Li D, Yang G, Cui Y, Wang A, Li C, Green Chem., 17, 4552 (2015)
  32. Tang XD, Zhang YF, Li JJ, Zhu YQ, Qing DY, Deng YX, Ind. Eng. Chem. Res., 54(16), 4625 (2015)
  33. Smith EL, Abbott AP, Ryder KS, Chem. Rev., 114(21), 11060 (2014)
  34. Zhu W, Wang C, Li H, Wu P, Xun S, Jiang W, Chen Z, Zhaoc Z, Li H, Green Chem., 17, 2464 (2015)
  35. Wang SS, Yang GY, Chem. Rev., 115(11), 4893 (2015)
  36. Shojaei AF, Rezvani MA, Loghmani MH, Fuel Process. Technol., 118, 1 (2014)
  37. Rezvani MA, Zonoz FM, J. Ind. Eng. Chem., 22, 83 (2015)
  38. Ribeiro SO, Juliao D, Cunha-Silva L, Domingues VF, Valenca R, Ribeiro JC, de Castro B, Balula SS, Fuel, 166, 268 (2016)
  39. Garcia-Gutierrez JL, Laredo GC, Garcia-Gutierrez P, Jimenez-Cruz F, Fuel, 138, 118 (2014)
  40. Zou CJ, Zhao PW, Ge J, Qin YB, Luo PY, Fuel, 104, 635 (2013)
  41. Jiang X, Li HM, Zhu WS, He LN, Shu HM, Lu JD, Fuel, 88(3), 431 (2009)
  42. Komintarachat C, Trakarnpruk W, Ind. Eng. Chem. Res., 45(6), 1853 (2006)
  43. Maurya MR, Arya A, Kumar A, Pessoa JC, J. Chem. Soc.-Dalton Trans., 12, 2185 (2009)
  44. Maurya MR, Arya A, Kumar A, Kuznetsov ML, Avecilla F, Pessoa JC, Inorg. Chem., 49(14), 6586 (2010)
  45. Yin P, Wang J, Xiao Z, Wu P, Wei Y, Liu T, Chem.-Eur. J., 18, 9174 (2012)
  46. Oble J, Riflade B, Noel A, Malacria M, Thorimbert S, Hasenknopf B, Lacote E, Org. Lett., 13(22), 5990 (2011)
  47. Miao WK, Yan YK, Wang XL, Xiao Y, Ren LJ, Zheng P, Wang CH, Ren LX, Wang W, ACS Macro Lett., 3(2), 211 (2014)
  48. Lu H, Zhang Y, Jiang Z, Li C, Green Chem., 12(11), 1954 (2010)
  49. Lu HY, Ren WZ, Liao WP, Chen W, Li Y, Suo ZH, Appl. Catal. B: Environ., 138, 79 (2013)
  50. Jiang CY, Wang JJ, Wang ST, Guan HY, Wang XH, Huo MX, Appl. Catal. B: Environ., 106(3-4), 343 (2011)
  51. Lu H, Gao J, Jiang Z, Yang Y, Song B, Li C, Chem. Commun., 2, 150 (2007)
  52. Li C, Jiang Z, Gao J, Yang Y, Wang S, Tian F, Sun F, Sun X, Ying P, Han C, Chem.-Eur. J., 10, 2277 (2004)
  53. Li C, Gao J, Jiang Z, Wang S, Lu H, Yang Y, Jing F, Top. Catal., 35, 169 (2005)
  54. Lu HY, Gao JB, Jiang ZX, Jing F, Yano YX, Wang G, Li C, J. Catal., 239(2), 369 (2006)
  55. Okumura K, Ito S, Yonekawa M, Nakashima A, Niwa M, Top. Catal., 52, 649 (2009)
  56. Yu XD, Guo YH, Li KX, Yang X, Xu LL, Guo YN, Hu JL, J. Mol. Catal. A-Chem., 290(1-2), 44 (2008)
  57. Park DR, Park S, Bang Y, Song IK, Appl. Catal. A: Gen., 373(1-2), 201 (2010)
  58. Misono M, Stud. Surf. Sci. Catal., 176, 97 (2013)
  59. Chamack M, Mahjoub AR, Aghayan H, Chem. Eng. Res. Des., 94, 565 (2015)
  60. Yamaura T, Kamata K, Yamaguchi K, Mizuno N, Catal. Today, 203, 76 (2013)
  61. Rezvani MA, Oveisi M, Asli MAN, J. Mol. Catal. A-Chem., 410, 121 (2015)
  62. Lu H, Gao HJ, Jiang Z, Yang Y, Song B, Li C, Chem. Commun., 2, 150 (2007)
  63. Laredo GC, Montesinos A, De los Reyes JA, Appl. Catal. A: Gen., 265(2), 171 (2004)
  64. Ueda T, Yamashita K, Onda A, Appl. Catal. A: Gen., 485, 181 (2014)
  65. Abbott AP, Harris RC, Ryder KS, Agostino CD, Gladden LF, Mantle MD, Green Chem., 13, 82 (2011)
  66. Park DR, Leparulo M, Pope M, Catal. Commun., 9, 293 (2008)
  67. Tong X, Zhu W, Wu Q, Qian X, Liu Z, Yan W, Gong J, J. Alloy. Compd., 509, 7768 (2011)
  68. Sanchez LM, Sathicq AG, Baronetti GT, Thomas HJ, Romanelli GP, Catal. Lett., 144(1), 172 (2014)
  69. Liu XH, Luo XH, Lu SX, Zhang JC, Cao WL, J. Colloid Interface Sci., 307(1), 94 (2007)
  70. Bordoloi A, Lefebvre E, Halligudi SB, J. Catal., 247(2), 166 (2007)
  71. Busca G, J. Raman Spectrosc., 33, 348 (2002)
  72. Ueda T, Nishimoto Y, Saito R, Ohnishi M, Nambu JI, Inorganics, 3, 355 (2015)
  73. Uchida S, Kawamoto R, Akatsuka A, Hikichi S, Mizunlo N, Chem. Mater., 17, 1367 (2005)
  74. Liu H, Yue B, Sun W, Chen Z, Jin S, Deng J, Xie G, Shao Q, Wu T, Transit. Met. Chem., 22, 321 (1997)
  75. Contant R, Abbessi M, Thouvenot R, Herve G, Inorg. Chem., 43(12), 3597 (2004)
  76. Silversmit G, Depla D, Poelman H, Marin GB, De Gryse R, J. Electron Spectrosc. Relat. Phenom., 135, 167 (2004)
  77. Kaczmarek SM, Tomaszewicz E, Moszynski D, Jasik A, Leniec G, Mater. Chem. Phys., 124(1), 646 (2010)
  78. Asumana C, Yu GR, Guan YW, Yang SD, Zhou SZ, Chen XC, Green Chem., 13, 3300 (2011)
  79. Dharaskar SA, Wasewar KL, Varma MN, Shende DZ, Yoo CK, Proc. Eng., 51, 416 (2013)
  80. Asumana C, Yu GR, Li X, Zhao JJ, Liu G, Chen XC, Green Chem., 12, 2030 (2010)
  81. Chen XC, Liu G, Yuan S, Asumana C, Wang WB, Yu GR, Sep. Sci. Technol., 47(6), 819 (2012)
  82. Yu GR, Li X, Liu XX, Asumana C, Chen XC, Ind. Eng. Chem. Res., 50(4), 2236 (2011)
  83. Bosmann A, Datsevich L, Jess A, Lauter A, Schmitz C, Wasserscheid P, Chem. Commun., 23, 2494 (2001)
  84. Hansmeier AR, Meindersma GW, Haan AB, Green Chem., 13, 1907 (2011)
  85. Gao HS, Luo MF, Xing JM, Wu Y, Li YG, Li WL, Liu QF, Liu HZ, Ind. Eng. Chem. Res., 47(21), 8384 (2008)
  86. Schobert HH, The Chemistry of Hydrocarbon Fuels, first ed., Butterworth, London, 1990.
  87. Roy RK, A Primer on the Taguchi Method, second ed., Society of Manufacturing Engineers, New York, 2010.