Mathematical modeling of a catalytic membrane reactor: dehydrogenation of methanol over copper on silica-montmorillonite composite

被引:0
|
作者
Ekaterina V. Shelepova
Lyudmila Y. Ilina
Aleksey A. Vedyagin
机构
[1] Boreskov Institute of Catalysis SB RAS,
[2] National Research Tomsk Polytechnic University,undefined
关键词
Mathematical modeling; Catalytic membrane reactor; Methanol dehydrogenation; Hydrogen removal; Thermodynamically conjugated processes;
D O I
暂无
中图分类号
学科分类号
摘要
The process of methanol dehydrogenation over nanostructured copper-containing catalyst was simulated using a two-dimensional non-isothermal stationary mathematical model of the catalytic membrane reactor. The model considers mass and heat transfer in both axial and radial directions. Additionally, it takes into account the change of the reaction mixture volume occurs as a result of chemical reactions and selective removal of hydrogen through the membrane. The reaction of methanol dehydrogenation realized within the inner side of tubular membrane reactor was thermodynamically conjugated with hydrogen oxidation reaction taking place in the outer (shell) side. The effects of various parameters on the process performance have been calculated and discussed. The most effective way to realize the process of methanol dehydrogenation in a catalytic membrane reactor was found to use the small values of residence times along with the temperature of the reactor outer wall of about 125–150 °C. The heat generated by the exothermic oxidation reaction in the shell side can be efficiently utilized to warm the reaction zone up to the desired temperature.
引用
收藏
页码:117 / 135
页数:18
相关论文
共 47 条
  • [31] Highly selective dehydrogenation of methanol to methyl formate over copper catalysts supported on hierarchical hollow silica spherical
    Li, Yan
    Zhao, Jinxian
    Yan, Aolue
    Quan, Yanhong
    Ren, Jun
    FUEL, 2025, 388
  • [32] Gas separative silica CVI membranes used in a high temperature catalytic membrane reactor for the direct dehydrogenation of propane.
    Weyten, HD
    Keizer, K
    Luyten, J
    Leysen, R
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1997, 214 : 272 - PMSE
  • [33] Evaluation of silica membrane reactor performance for hydrogen production via methanol steam reforming: Modeling study
    Ghasemzadeh, K.
    Morrone, P.
    Liguori, S.
    Babaluo, A. A.
    Basile, A.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (36) : 16698 - 16709
  • [34] Dehydrogenation of ethane and hydrogenation of carbon dioxide in a catalytic membrane reactor using copper-plated LaNi5 as a membrane material
    Uemura, Y
    Morita, K
    Ohzuno, Y
    Hatate, Y
    INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2006, 4
  • [35] Comparison of diffusion models in the modeling of a catalytic membrane fixed bed reactor coupling dehydrogenation of ethylbenzene with hydrogenation of nitrobenzene
    Abo-Ghander, Nabeel S.
    Logist, Filip
    Grace, John R.
    Van Impe, Jan F. M.
    Elnashaie, Said S. E. H.
    Lim, C. Jim
    COMPUTERS & CHEMICAL ENGINEERING, 2012, 38 : 11 - 23
  • [36] H2 production in silica membrane reactor via methanol steam reforming: Modeling and HAZOP analysis
    Ghasemzadeh, K.
    Morrone, P.
    Iulianelli, A.
    Liguori, S.
    Babaluo, A. A.
    Basile, A.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (25) : 10315 - 10326
  • [37] Elucidating the nature and role of copper species in catalytic carbonylation of methanol to methyl acetate over copper/titania-silica mixed oxides
    Meng, Xianjie
    Guo, Heqin
    Wang, Qiang
    Xiao, Yong
    Chen, Congbiao
    Hou, Bo
    Li, Debao
    CATALYSIS SCIENCE & TECHNOLOGY, 2017, 7 (16) : 3511 - 3523
  • [38] Mathematical Modeling and Optimization of Combined Steam and Dry Reforming of Methane Process in Catalytic Fluidized Bed Membrane Reactor
    Shahkarami, Pirouz
    Fatemi, Shohreh
    CHEMICAL ENGINEERING COMMUNICATIONS, 2015, 202 (06) : 774 - 786
  • [39] Preparation of a Catalytic Membrane Reactor with Palladium Nanoparticles Supported by a Packed-Bed Silica Nanosupporter for Gas-Phase Methanol Oxidation
    Lee, Kyung Jin
    Min, Sa Hoon
    Jang, Jyongsik
    SMALL, 2010, 6 (21) : 2378 - 2382
  • [40] MATHEMATICAL-MODELING AND INVESTIGATION OF METHANOL SYNTHESIS PROCESS OVER A LOW-TEMPERATURE COPPER-CONTAINING CATALYST
    KAFAROV, VV
    PEROV, VL
    MEDVEDEV, EA
    POPOV, VB
    INTERNATIONAL CHEMICAL ENGINEERING, 1975, 15 (01): : 153 - 158