Hydrocracking of vacuum gas oil-vegetable oil mixtures for biofuels production

被引:118
|
作者
Bezergianni, Stella [1 ]
Kalogianni, Aggeliki [1 ]
Vasalos, Iacovos A. [1 ]
机构
[1] CERTH, CPERI, Thermi 57001, Greece
关键词
Hydrocracking; Vegetable oil; Biofuels; DIESEL FUEL; REFINERIES; BIOMASS;
D O I
10.1016/j.biortech.2009.01.018
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Hydrocracking of vacuum gas oil (VGO) - vegetable oil mixtures is a prominent process for the production of biofuels. In this work both pre-hydrotreated and non-hydrotreated VGO are assessed whether they are suitable fossil components in a VGO-vegetable oil mixture as feed-stocks to a hydrocracking process. This assessment indicates the necessity of a VGO pre-hydrotreated step prior to hydrocracking the VGO-vegetable oil mixture. Moreover, the comparison of two different mixing ratios suggests that higher vegetable oil content favors hydrocracking product yields and qualities. Three commercial catalysts of different activity are utilized in order to identify a range of products that can be produced via a hydrocracking route. Finally, the effect of temperature on hydrocracking VGO-vegetable oil mixtures is studied in terms of conversion and selectivity to diesel, jet/kerosene and naphtha. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3036 / 3042
页数:7
相关论文
共 50 条
  • [21] Production of Biocomponent Containing Gas Oil with the Coprocessing of Vegetable Oil–Gas Oil Mixture
    Csaba Tóth
    Péter Baladincz
    Jenő Hancsók
    Topics in Catalysis, 2011, 54
  • [22] Production of Biocomponent Containing Gas Oil with the Coprocessing of Vegetable Oil-Gas Oil Mixture
    Toth, Csaba
    Baladincz, Peter
    Hancsok, Jeno
    TOPICS IN CATALYSIS, 2011, 54 (16-18) : 1084 - 1093
  • [23] Catalytic cracking of vegetable oils and vacuum gas oil
    Doronin, V. P.
    Potapenko, O. V.
    Lipin, P. V.
    Sorokina, T. P.
    FUEL, 2013, 106 : 757 - 765
  • [24] HIGH-PRESSURE HYDROCRACKING OF VACUUM GAS OIL TO MIDDLE DISTILLATES
    LAHIRI, CR
    BISWAS, D
    PHYSICA B & C, 1986, 139 (1-3): : 725 - 728
  • [25] Impact of Feedstock Properties on the Deactivation of a Vacuum Gas Oil Hydrocracking Catalyst
    Vivas-Báez, July C.
    Pirngruber, Gerhard D.
    Servia, Alberto
    Dubreuil, Anne-Claire
    Pérez-Martínez, David J.
    Pirngruber, Gerhard D. (gerhard.pirngruber@ifpen.fr), 1600, American Chemical Society (35): : 12297 - 12309
  • [26] Hydrocracking of a Heavy Vacuum Gas Oil with Fischer-Tropsch Wax
    Pleyer, Olga
    Vrtiska, Dan
    Straka, Petr
    Vrablik, Ales
    Jencik, Jan
    Simacek, Pavel
    ENERGIES, 2020, 13 (20)
  • [27] Molecular-Level Modeling and Simulation of Vacuum Gas Oil Hydrocracking
    Alvarez-Majmutov, Anton
    Chen, Jinwen
    Gieleciak, Rafal
    ENERGY & FUELS, 2016, 30 (01) : 138 - 148
  • [28] Identification and Observability of Lumped Kinetic Models for Vacuum Gas Oil Hydrocracking
    Till, Zoltan
    Varga, Tamas
    Szabo, Laura
    Chovan, Tibor
    ENERGY & FUELS, 2017, 31 (11) : 12654 - 12664
  • [29] HIGH PRESSURE HYDROCRACKING OF VACUUM GAS OIL TO MIDDLE DISTILLATES.
    Lahiri, C.R.
    Biswas, Dipa
    Physica B: Physics of Condensed Matter & C: Atomic, Molecular and Plasma Physics, Optics, 1985, 139-140 : 725 - 728
  • [30] Coke deposition upon pyrolysis of vacuum gas oil after hydrocracking
    Lyakhnovich, I.Z.
    Tkachev, S.M.
    Khimiya i Tekhnologiya Topliv i Masel, 2002, (04): : 18 - 20