화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.76, 1-16, August, 2019
A review on the Mo-precursors for catalytic hydroconversion of heavy oil
E-mail:
MoS2 is known as core material for the hydroconversion of heavy oil in petroleum refinery due to its superior coke suppression and desulfurization activities. With the recent interest in applying MoS2 to slurry-bed reactors, it has become important to design appropriate Mo-precursors and to identify factors for evaluating them. In this review, various methods for the synthesis of MoS2 from Mo-precursors and their physicochemical properties were examined. It was revealed that several properties of Mo-precursors (dispersibility and thermal properties) and MoS2 (sulfidation degree, particle size, and stacking) serve as crucial factors in determining catalytic performance. For better catalyst design, the decomposition pathway of Mo-precursors and the effect of carbonaceous material on MoS2 were also discussed.
  1. Sahu R, Song BJ, Im JS, Jeon YP, Lee CW, J. Ind. Eng. Chem., 27, 12 (2015)
  2. Angeles MJ, Leyva C, Ancheyta J, Ramirez S, Catal. Today, 220-222, 274 (2014)
  3. Farrar GL, Oil Gas J., 71, 25 (1973)
  4. Stormont DH, Oil Gas J., 66, 104 (1968)
  5. Castaneda LC, Munoz JAD, Ancheyta J, Catal. Today, 220, 248 (2014)
  6. Cherzer J, Gruia AJ, Hydrocracking Science and Technology, Marcel Dekker, New York, 1966.
  7. Furimsky E, Appl. Catal. A: Gen., 46, 177 (1988)
  8. Sarkar GN, Advanced Petroleum Refining, 1st ed., Khanna Publisher, New Delhi, 1998.
  9. Gosselink JW, Cattech, 2, 127 (1988)
  10. Kressmann S, Morel F, Harle V, Kasztelan S, Catal. Today, 43(3-4), 203 (1998)
  11. Yi M, Zhang C, RSC Adv., 8, 9564 (2018)
  12. Jin HY, Guo CX, Liu X, Liu JL, Vasileff A, Jiao Y, Zheng Y, Qiao SZ, Chem. Rev., 118(13), 6337 (2018)
  13. Paolella A, Laul D, Timoshevskii V, Zen W, Marras S, Bertoni G, Wahba AS, et al., J. Phys. Chem. C., 122, 1014 (2018)
  14. Ganatra R, Zhang Q, ACS Nano, 8, 4977 (2014)
  15. Afanasiev P, Chimie CR, 11, 159 (2008).
  16. Dubois MR, Chem. Rev., 89, 1 (1989)
  17. Zhou W, Zhou X, Najmaei S, Liu Z, Shi Y, Kong J, Lou J, Ajayan PM, Yakobson BI, Idrobo JC, Nano Lett., 13, 2615 (2013)
  18. Chianelli RR, Berhault G, Torres B, Catal. Today, 147(3-4), 275 (2009)
  19. Lipsch JMJG, Schuit GCA, J. Catal., 15, 174 (1969)
  20. Schuit GCA, Gates BC, AIChE J., 19, 417 (1973)
  21. Bellussi G, Rispoli G, Landoni A, Millini R, Molinari D, Montanari E, Moscotti D, Pollesel P, J. Catal., 308, 189 (2013)
  22. Boepple J, Forgie R, Khattirat K, Chemsystems PERP Program, Nexant, 2011.
  23. Maesen T, Istanbul, MayPresented at IDTC & BBTC Conference2015, Presented at IDTC & BBTC Conference (2015).
  24. Liu Y, Gao L, Wen L, Zong B, Recent Patents Chem. Eng., 2, 22 (2009)
  25. Verstraete J, Guillaume D, Auberger MR, Heavy Crude Oils: From Geology to Upgrading: an Overview, Editions Technip, Paris, 2011.
  26. Ramirez-Corredores MM, The Science and Technology of Unconventional Finding Refining Opportunities, Academic Press, Massachusetts, 2017.
  27. Castillo E, Argentina, OctoberPresented at PDVSA meeting2006, Presented at PDVSA meeting (2006).
  28. Bacaud R, Fuel, 117, 624 (2014)
  29. Kadiev KM, Khadzhiev SN, Kadieva MK, Dogova ES, Pet. Chem., 57(7), 608 (2017)
  30. Nguyen MT, Nguyen NT, Cho J, Park C, Park S, Jung J, Lee CW, J. Ind. Eng. Chem., 43, 1 (2016)
  31. Breysse M, Afanasiev P, Geantet C, Vrinat M, Catal. Today, 86(1-4), 5 (2003)
  32. Khadzhiev SN, Kadiev KM, Kadieva MK, Pet. Chem., 54(5), 323 (2014)
  33. Zonnevylle MC, Hoffmann R, Harris S, Surf. Sci., 199, 320 (1988)
  34. Chianelli RR, Siadati MH, Rosa MPD, Berhault G, Wilcoxon JP, Bearden R, Abrams BL, Catal. Rev. Sci. Eng., 48, 1 (2006)
  35. Panariti N, Del Bianco A, Del Piero G, Marchionna M, Appl. Catal. A: Gen., 204(2), 203 (2000)
  36. Tanaka Y, Shimada H, Matsubayashi N, Nishijima A, Nomura M, Catal. Today, 45(1-4), 319 (1998)
  37. Bearden R, Aldridge CL, Energ. Progress, 1, 44 (1981)
  38. Rueda N, Bacaud R, Vrinat M, J. Catal., 169(1), 404 (1997)
  39. Pruett RL, US 2999075, 1961.
  40. Gleim WKT, US 3161584, 1964.
  41. Gleim WKT, Gatsis JG, US 3161585, 1964.
  42. Becker M, US 3578690, 1971.
  43. Cavitt SB, US 3595891, 1971.
  44. Alkaitis A, Cells PL, US 4162986, 1979.
  45. Bearden R, Aldridge CL, US 4226742, 1980.
  46. Chianelli RR, Pecoraro TA, US 4508847, 1985.
  47. Derbyshire FJ, Varghese P, US 4604189, 1986.
  48. Cells PL, US 4824611, 1989.
  49. Halbert TR, Chianelli RR, Stiefel EI, Jacobson A, US 5026473, 1991.
  50. Gatsis JG, US 5171727, 1992.
  51. Marchionna M, Lami M, Ancillotti F, EP 0519556 A1, 1992.
  52. Cyr T, Lewkowicz L, Ozum B, Lott RK, Lee LK, US 5578197, 1996.
  53. Cordova J, Pereira P, Guitian J, Andriollo A, Cirilo A, Granadillo F, US 6043182, 2000.
  54. Rueda N, Bacaud R, Lanteri P, Vrinat M, Appl. Catal. A: Gen., 215(1-2), 81 (2001)
  55. Iwata Y, Araki Y, Honna K, Miki Y, Sato K, Shimada H, Catal. Today, 65(2-4), 335 (2001)
  56. Alonso G, Chianelli RR, Fuentes S, Torres B, US 7223713 B2, 2007.
  57. Lott RK, Lee LK, US 7578928 B2, 2009.
  58. Wu Z, Zhou Z, Zhou B, US 7670984 B2, 2010.
  59. Rezaei H, Liu XB, ArdakaniA SJ, Smith KJ, Bricker M, Catal. Today, 150(3-4), 244 (2010)
  60. Zhou B, Zhou Z, Wu Z, US 7951745 B2, 2011.
  61. Pereira P, Rivas G, Cordova J, Granadillo F, Marzin R, Solari B, Zacardias L, US 8551907 B2, 2013.
  62. Deng W, Li C, Zhang Q, Li S, Wen P, Mubao Q, CN 103980320A, 2014.
  63. Borremans D, Lacroix M, Lannic-Dromard KL, Vendrell G, US 9233363, 2016.
  64. Qiu H, Zhou B, US 9403153 B2, 2016.
  65. Kim KD, Lee YK, J. Catal., 369, 111 (2019)
  66. Soled SL, Miseo S, Baumgartner JE, Nistor I, Nandi P, Guzman J, Levin D, Wilson K, Bergweff JA, Huiberts RJ, Loevezijn AV, US 10022712 B2, 2018.
  67. Yang T, Liu C, Meng H, Qin Y, Deng W, Niu Q, IOP Conf. Ser.: Earth Environ. Sci., 170, 22036 (2018)
  68. Kim SH, Kim KD, Lee D, Lee YK, J. Catal., 364, 131 (2018)
  69. Alonso G, Del Valle M, Cruz J, Licea-Claverie A, Petranovskii V, Fuentes S, Catal. Lett., 52(1-2), 55 (1998)
  70. Iwata Y, Sato K, Yoneda T, Miki Y, Sugimoto Y, Nishijima A, Shimada H, Catal. Today, 45(1-4), 353 (1998)
  71. Delmon B, Froment GF, Grange P, Hydrotreatment and Hydrocracking of Oil Fraction, Elsevier, Burlington, 1999.
  72. Berhault G, Mehta A, Pavel AC, Yang JZ, Rendon L, Yacaman MJ, Araiza LC, Moller AD, Chianelli RR, J. Catal., 198(1), 9 (2001)
  73. Glasson C, Geantet C, Lacroix M, Labruyere F, Dufresne P, J. Catal., 212(1), 76 (2002)
  74. Duphil D, Bastide S, Levy-Clement C, J. Mater. Chem., 12, 2430 (2002)
  75. Alonso G, Berhault G, Paraguay F, Rivera E, Fuentes S, Chianelli RR, Mater. Res. Bull., 38(6), 1045 (2003)
  76. Alonso G, Siadati MH, Berhault G, Aguilar A, Fuentes S, Chianelli RR, Appl. Catal. A: Gen., 263(1), 109 (2004)
  77. Yu HT, Liu Y, Brock SL, Inorg. Chem., 47(5), 1428 (2008)
  78. Nogueira A, Znaiguia R, Uzio D, Afanasiev P, Berhault G, Appl. Catal. A: Gen., 429-430, 92 (2012)
  79. Li ZH, Liu J, Wang HY, Wang ED, Wang BW, Ma XB, Qin SD, Sun Q, J. Mol. Catal. A-Chem., 378, 99 (2013)
  80. Zafiropoulou I, Katsiotis MS, Boukos N, Karakassides MA, Stephen S, Tzitzios V, Fardis M, Vladea RV, Alhassan SM, Papavassilou G, J. Phys. Chem. C, 117, 10135 (2013)
  81. Huirache-Acuna R, Alonso-Nunez G, Paraguay-Delgado F, Lara-Romero J, Berhault G, Rivera-Munoz EM, Catal. Today, 250, 28 (2015)
  82. Dai X, Du K, Li Z, Liu M, Ma Y, Sun H, Zhang X, Ying Y, ACS Appl. Mater. Interfaces, 7, 27242 (2015)
  83. Savjani N, Lewis EA, Missett MA, Brent JR, Dryfe RA, Haigh SJ, O’Brien P, Chem. Mater., 28, 657 (2016)
  84. Jiang Y, Wang D, Li J, Pan Z, Ma H, Lv G, Qu W, Wang L, Tian Z, Catal. Sci. Tech., 7, 2998 (2017)
  85. Liu Y, Wu K, Guo X, Wang W, Yang Y, J. Fuel Chem. Tech., 46, 535 (2018)
  86. Alphazan T, Bobduelle-Skrzypczak A, Legens C, Gay AS, Boudence Z, Girleanu M, Ersen O, Coperet C, Raybaud P, ACS Catal., 4, 4320 (2014)
  87. Kubota T, Miyamoto N, Yoshioka M, Okamoto Y, Appl. Catal. A: Gen., 480, 10 (2014)
  88. Nikulshin PA, Salnikov VA, Mozhaev AV, Minaev PP, Kogan VM, Pimerzin AA, J. Catal., 309, 386 (2014)
  89. Le Z, Mingfeng L, Hong N, China Pet. Process. Petrochem. Technol., 16, 1 (2014)
  90. Minaev PP, Nikulshin PA, Kulikova MS, Pimerzin AA, Kogan VM, Appl. Catal. A: Gen., 505, 456 (2015)
  91. Bara C, Lamic-Humblot AF, Fonda E, Gay AS, Taleb AL, Devers E, Digne M, Pirngruber GD, Carrier X, J. Catal., 344, 591 (2016)
  92. Sanchez J, Moreno A, Mondragon F, Smith KJ, Energy Fuels, 32(6), 7066 (2018)
  93. Nguyen NT, Park SY, Jung JH, Cho JM, Lee CW, Park YK, J. Ind. Eng. Chem., 61, 32 (2018)
  94. Rezaei H, Ardakani SJ, Smith KJ, Energy Fuels, 26(5), 2768 (2012)
  95. Kadiev KM, Zaytseva OV, Magomadov EE, Chernysheva EA, Oknina NV, Batov AE, Kadieva MK, Kapustin VM, Khadzhiev SN, Pet. Chem., 55(6), 487 (2015)
  96. Rana MS, Samano V, Ancheyta J, Diaz JAI, Fuel, 86(9), 1216 (2007)
  97. Breysse M, Furimsky E, Kasztelan S, Lacroix M, Perot G, Catal. Rev., 44, 651 (2002)
  98. Travert A, Nakamura H, van Santen RA, Cristol S, Paul JF, Payen E, J. Am. Ceram. Soc., 24, 7084 (2002)
  99. Bellussi G, Rispoli G, Molinari D, Landoni A, Pollesel P, Panariti N, Millini R, Montanari E, Catal. Sci. Tech., 3, 176 (2013)
  100. Khadzhiev SN, Kadiev KM, Zhigalina OM, Kadieva MK, Khmelenin DN, Pet. Chem., 55(8), 655 (2015)
  101. Choi BM, Son SH, Noh MS, Lee KS, Lee CW, Park SY, Chung MC, J. Nanosci. Nanotechnol., 18, 1465 (2018)
  102. Prajapati R, Kohli K, Maity SK, Energy Fuels, 31(4), 3905 (2017)
  103. Khadzhiev SN, Kadiev KM, Mezhidov VK, Zarkesh J, Hashemi R, Targhi SKM, US 7585406 B2, 2009.
  104. Zhang S, Liu D, Deng W, Que G, Energy Fuels, 21(6), 3057 (2007)
  105. Wienold J, Jentoft RE, Ressler T, Eur. J. Inorg. Chem., 6, 1058 (2003)
  106. Shin SY, Lee JH, Jo YK, Nguyen MT, Park BK, Park SY, Lee CW, Kim CG, Chung TM, J. Ind. Eng. Chem., 72, 408 (2019)
  107. Gandubert AD, Legens C, Guillaume D, Payen E, Surf. Interface Anal., 38, 206 (2006)
  108. Guzman HJ, Isquierdo F, Carbognani L, Vitale G, Scott CE, Pereira-Almao P, Energy Fuels, 31(10), 10706 (2017)
  109. Ren R, Wang Z, Guan C, Shi B, Fuel Process. Technol., 86, 469 (2004)
  110. Eggertsen FT, Roberts RM, J. Am. Chem. Soc., 63, 1981 (1959)
  111. Molinari M, Bonomi S, WO 2018/07855 A1, 2018.
  112. Farag H, Energy Fuels, 16(4), 944 (2002)
  113. Vissers JPR, Scheffer B, de Beer VHJ, Moulijn JA, Prins R, J. Catal., 105, 277 (1987)
  114. Duchet JC, van Oers EM, de Beer VHJ, Prins R, J. Catal., 80, 386 (1983)
  115. Nelson J, Yamanaka M, Lopez-Linares F, Poirier L, Rogel E, Energy Fuels, 31(11), 11971 (2017)
  116. Shimada H, J. Japan Pet. Inst., 59, 46 (2016)
  117. Yang L, Wang XZ, Liu Y, Yu ZF, Liang JJ, Chen BB, Shi C, Tian S, Li X, Qiu JS, Appl. Catal. B: Environ., 200, 211 (2017)
  118. Erickson BE, Helz GR, Geochim. Cosmochim. Acta, 64, 1149 (2000)
  119. Weber T, Muijsers JC, Vanwolput HJ, Verhagen CP, Niemantsverdriet JW, J. Phys. Chem., 100(33), 14144 (1996)
  120. Prasad TP, Diemann E, Muller A, J. Inorg. Nucl. Chem., 35, 1895 (1973)
  121. Fukuda K, Dokiya M, Kameyama T, Kotera Y, Ind. Eng. Chem. Fundam., 17, 243 (1978)
  122. Brito JL, Ilija M, Hernandez P, Thermochim. Acta, 256(2), 325 (1995)
  123. Walton RI, Dent AJ, Hibble SJ, Chem. Mater., 10, 3737 (1998)
  124. Watanabe I, Otake M, Yoshimoto M, Sakanishi K, Korai Y, Mochida I, Fuel, 81(11-12), 1515 (2002)
  125. Raje N, Naik VR, Reddy AVR, J. Therm. Anal. Calorim., 112, 187 (2013)
  126. Khaemba DN, Neville A, Morina A, RSC Adv., 6, 38637 (2016)
  127. Rezaei H, Smith KJ, Energy Fuels, 27(10), 6087 (2013)
  128. Chianelli RR, Berhault G, Catal. Today, 53(3), 357 (1999)
  129. Aldridge CL, Bearden R, US 4313818, 1982.
  130. Khadzhiev SN, Kadiev KM, Gul'maliev AM, Kadieva MK, Pet. Chem., 57(14), 1277 (2017)
  131. Tuxen A, Gobel H, Hinnemann B, Li ZS, Knudsen KG, Topsoe H, Lauritsen JV, Besenbacher F, J. Catal., 281(2), 345 (2011)
  132. Liu H, Wang J, Wang Z, Fan S, Chen K, ChemistrySelect, 3, 4292 (2018)
  133. Nguyen TM, Jung J, Lee CW, Cho J, Fuel, 214, 174 (2018)
  134. Lee CW, Cho J, Park S, WO 2017/160017 A1, 2017.