Light olefin production by catalytic co-cracking of Fischer-Tropsch distillate with methanol and the reaction kinetics investigation

被引:5
|
作者
Zou, Hui [1 ,2 ]
Pan, Teng [1 ]
Shi, Yanwen [1 ]
Cheng, Youwei [1 ,2 ]
Wang, Lijun [1 ,2 ]
Zhang, Yu [3 ]
Li, Xi [1 ]
机构
[1] Zhejiang Univ, Coll Chem & Biol Engn, Zhejiang Prov Key Lab Adv Chem Engn Manufacture T, Hangzhou 310027, Peoples R China
[2] Inst Zhejiang Univ, Jiuhua Blvd North, Qzhou 324000, Peoples R China
[3] Ningxia Shenyao Technol Co Ltd, China Energy Investment Co, West Desheng Rd 1, Yinchuan 750200, Ningxia, Peoples R China
关键词
Fischer-Tropsch distillate; Catalytic co-cracking; Light olefins; Methanol; Reaction kinetics; METHYLATION REACTIONS; CONVERSION; ZSM-5; HYDROCARBONS; PROPYLENE; H-ZSM-5; PROPENE; MODEL; OLIGOMERIZATION; TRANSFORMATION;
D O I
10.1016/j.cjche.2019.04.010
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Catalytic co-cracking of Fischer-Tropsch (FT) light distillate and methanol combines highly endothermic olefin cracking reaction with exothermic methanol conversion over ZSM-5 catalyst to produce light olefins through a nearly thermoneutral process. The kinetic behavior of co-cracking reactions was investigated by different feed conditions: methanol feed only, olefin feed only and co-feed of methanol with olefins or F-T distillate. The results showed that methanol converted to C-2-C-6 olefins in first-order parallel reaction at low space time, methylation and oligomerization-cracking prevailed for the co-feed of methanol and C-2-C-5 olefins, while for C-6-C-8 olefins, monomolecular cracking was the dominant reaction whether fed alone or co-fed with methanol. For FT distillate and methanol co-feed, alkanes were almost un-reactive, C-3-C-5 olefins were obtained as main products, accounting for 71 wt% for all products. A comprehensive co-cracking reaction scheme was proposed and the model parameters were estimated by the nonlinear least square method. It was verified by experimental data that the kinetic model was reliable to predict major product distribution for co-cracking of Fr distillate with methanol and could be used for further reactor development and process design. (C) 2019 The Chemical Industry and Engineering Society of China, and Chemical Industry Press Co., Ltd. All rights reserved.
引用
收藏
页码:143 / 151
页数:9
相关论文
共 50 条
  • [41] Effects of Rare Earth Metal Promotion over Zeolite-Supported Fe-Cu-Based Catalysts on the Light Olefin Production Performance in Fischer-Tropsch Synthesis
    Burgun, Utku
    Zonouz, Hadi R.
    Okutan, Hasancan
    Atakul, Husnu
    Senkan, Selim
    Sarioglan, Alper
    Gur, Gamze Gumuslu
    ACS OMEGA, 2023, 8 (01): : 648 - 662
  • [42] ZSM-5-Promoted Co-Based Light-Assisted Thermocatalytic Fischer-Tropsch Synthesis Catalyst for Production of Liquid Fuel
    Zhang, Yichi
    Hu, Ruijue
    Su, Haiquan
    Su, Yue
    ENERGY TECHNOLOGY, 2024, 12 (06)
  • [43] Understanding the role of Fischer-Tropsch reaction kinetics in techno-economic analysis for co-conversion of natural gas and biomass to liquid transportation fuels
    Sahir, Asad H.
    Zhang, Yanan
    Tan, Eric C. D.
    Tao, Ling
    BIOFUELS BIOPRODUCTS & BIOREFINING-BIOFPR, 2019, 13 (05): : 1306 - 1320
  • [44] Zero emissions of CO2 during the production of liquid fuel from coal and natural gas by combining Fischer-Tropsch synthesis with catalytic dehydrogenation
    Huffman, Gerald P.
    FUEL, 2013, 109 : 206 - 210
  • [45] Synthetic Methanol/Fischer-Tropsch Fuel Production Capacity, Cost, and Carbon Intensity Utilizing CO2 from Industrial and Power Plants in the United States
    Zang, Guiyan
    Sun, Pingping
    Yoo, Eunji
    Elgowainy, Amgad
    Bafana, Adarsh
    Lee, Uisung
    Wang, Michael
    Supekar, Sarang
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2021, 55 (11) : 7595 - 7604
  • [46] Unravelling the influence of catalyst properties on light olefin production via Fischer–Tropsch synthesis: A descriptor space investigation using Single-Event MicroKinetics
    Chakkingal, Anoop
    Pirro, Laura
    Costa da Cruz, A.R.
    Barrios, Alan J.
    Virginie, Mirella
    Khodakov, Andrei Y.
    Thybaut, Joris W.
    Chemical Engineering Journal, 2021, 419
  • [47] Fuel-Rich Combustion Synthesized Co/Al2O3 Catalysts for Wax and Liquid Fuel Production via Fischer-Tropsch Reaction
    Ail, Snehesh Shivananda
    Benedetti, Vittoria
    Baratieri, Marco
    Dasappa, Srinivasaiah
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2018, 57 (11) : 3833 - 3843
  • [48] Kinetics of the Fischer-Tropsch reaction in fixed-bed reactor over a nano-structured Fe-Co-Ce catalyst supported with SiO2
    Eshraghi, Amir
    Mirzaei, Ar Akbar
    Atashi, Hossein
    JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2015, 26 : 940 - 947
  • [49] Efficient production of renewable hydrocarbon fuels using waste CO2 and green H2 by integrating Fe-based Fischer-Tropsch synthesis and olefin oligomerization
    Gao, Ruxing
    Zhang, Leiyu
    Wang, Lei
    Zhang, Chundong
    Jun, Ki-Won
    Kim, Seok Ki
    Park, Hae-Gu
    Gao, Ying
    Zhu, Yuezhao
    Wan, Hui
    Guan, Guofeng
    Zhao, Tiansheng
    ENERGY, 2022, 248
  • [50] Efficient production of renewable hydrocarbon fuels using waste CO2 and green H2 by integrating Fe-based Fischer-Tropsch synthesis and olefin oligomerization
    Gao, Ruxing
    Zhang, Leiyu
    Wang, Lei
    Zhang, Chundong
    Jun, Ki-Won
    Kim, Seok Ki
    Park, Hae-Gu
    Gao, Ying
    Zhu, Yuezhao
    Wan, Hui
    Guan, Guofeng
    Zhao, Tiansheng
    Energy, 2022, 248