Comparing and modeling the dehydrogenation of ethanol in a plug-flow reactor and a Pd-Ag membrane reactor

被引:26
|
作者
Keuler, JN [1 ]
Lorenzen, L [1 ]
机构
[1] Univ Stellenbosch, Dept Chem Engn, ZA-7602 Matieland, South Africa
关键词
D O I
10.1021/ie010127c
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In this study the performance of a membrane reactor was compared to that of a plug-flow reactor for the dehydrogenation of ethanol. The membrane consisted of a 2.2 mum Pd-Ag film (23 wt% Ag) deposited on the inside of an asymmetric a-alumina membrane tube (SCT). The membrane tube was packed with a 14.5 wt% Cu on SiO2 catalyst. The effects of the sweep gas flow rate, the ethanol feed flow rate, and the temperature on acetaldehyde yield and selectivity were investigated. A model was developed using measured kinetic data and membrane permeance data to predict the performance of the membrane reactor. The membrane reactor performed significantly better than the plug-flow reactor at all temperatures tested. The best results were obtained at 275 degreesC, where the total ethanol exit conversion increased from 45% (plug-flow reactor) to 60% at low feed flow rates and from 36% to 46% at high feed flow rates. The acetaldehyde selectivity for the membrane reactor increased from the lower 80% range to above 90% at 275 degreesC. The model underpredicted the total ethanol conversion, indicating that the measured reaction rate parameters for a differential reactor were lower than those for the membrane reactor.
引用
收藏
页码:1960 / 1966
页数:7
相关论文
共 50 条
  • [21] Oxidative Cracking of Propane in a Plug-Flow Laboratory Reactor
    A. S. Palankoeva
    A. A. Belyaev
    V. S. Arutyunov
    Russian Journal of Physical Chemistry B, 2022, 16 : 399 - 406
  • [22] Multi-tube Pd-Ag membrane reactor for pure hydrogen production
    ENEA, Unit Tecnica Fusione, C.R. ENEA Frascati, Via E. Fermi 45, Frascati I-00044, Italy
    Int J Hydrogen Energy, 20 (11470-11477):
  • [23] SACCHARIFICATION OF BAGASSE USING A COUNTERCURRENT PLUG-FLOW REACTOR
    FOX, D
    DUNN, NW
    GRAY, PP
    MARSDEN, WL
    JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY B-BIOTECHNOLOGY, 1983, 33 (02): : 114 - 118
  • [24] THE TEMPERATURE-SCANNING ADIABATIC PLUG-FLOW REACTOR
    WOJCIECHOWSKI, BW
    CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1992, 70 (04): : 721 - 726
  • [25] Multi-tube Pd-Ag membrane reactor for pure hydrogen production
    Tosti, Silvano
    Borgognoni, Fabio
    Santucci, Alessia
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (20) : 11470 - 11477
  • [26] Hydrogen production by a Pd-Ag membrane reactor during glycerol steam reforming: ANN modeling study
    Ghasemzadeh, Kamran
    Ahmadnejad, Farzad
    Aghaeinejad-Meybodi, Abbas
    Basile, Angelo
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018, 43 (15) : 7722 - 7730
  • [27] Dispersion influence in the plug-flow electrochemical reactor design
    Olea, M
    Oniciu, L
    PROGRESS IN FLUID FLOW RESEARCH: TURBULENCE AND APPLIED MHD, 1998, 182 : 869 - 873
  • [28] Ethanol steam reforming in a dense Pd-Ag membrane reactor: A modelling work. Comparison with the traditional system
    Galluccia, F.
    De Falco, M.
    Tosti, S.
    Marrelli, L.
    Basile, A.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2008, 33 (02) : 644 - 651
  • [29] Enhancement of CO conversion in a novel Pd-Ag membrane reactor for methanol synthesis
    Rahimpour, MR
    Ghader, S
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2004, 43 (09) : 1181 - 1188
  • [30] Upgrading of a syngas mixture for pure hydrogen production in a Pd-Ag membrane reactor
    Brunetti, A.
    Barbieri, G.
    Drioli, E.
    CHEMICAL ENGINEERING SCIENCE, 2009, 64 (15) : 3448 - 3454