The ReSER-COG process for hydrogen production on a Ni-CaO/Al2O3 complex catalyst

被引:14
|
作者
Wu, Rong [1 ]
Wu, Su Fang [1 ]
机构
[1] Zhejiang Univ, Dept Chem & Biol Engn, Hangzhou 310027, Zhejiang, Peoples R China
关键词
Hydrogen; Coke oven gas; Reforming; Catalyst; Calcium oxide; COKE-OVEN GAS; MODEL TAR COMPOUNDS; OXYGEN PERMEABILITY; PARTIAL OXIDATION; ELECTRICAL-CONDUCTIVITY; STEAM; METHANE; STABILITY; MECHANISM; PROPANE;
D O I
10.1016/j.ijhydene.2013.06.117
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The reactive sorption-enhanced reforming process of simulated coke oven gas (ReSER-COG) was investigated in a laboratory-scale fixed-bed reactor with Ni-CaO/Al2O3 complex catalyst. Simulated coke oven gases that are free of or contain C2+ hydrocarbons (C2H4, C2H6, C3H6, C3H8) have been studied as feed materials of the ReSER process for hydrogen production. The effects of temperature, steam to methane molar ratio (S/CH4) and carbon space velocity on the characteristics of ReSER-COG were studied. The results showed that the hydrogen concentration reaches up to 95.8% at a reaction temperature of 600 degrees C and a S/CH4 of 5.8 under normal atmospheric pressure conditions. This reaction temperature was approximately 200 degrees C lower than that of the coke oven gas steam reforming (COGSR) processes used for the hydrogen production. The amount of H-2 generated by ReSER-COG was approximately 4.4 times more than that produced by the pressure-swing adsorption (PSA) method per unit volume of COG. The reaction temperature was 50 degrees C lower when simulated COG with C2+ was used, as opposed to when COG without C2+ was used. The complex catalyst has a better resistance of coking during the ReSER-COG process when C2+ gas is present. Copyright (C) 2013, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:11818 / 11825
页数:8
相关论文
共 50 条
  • [1] Stability of the Ni-TiO2@nano CaO/Al2O3 complex catalyst used in ReSER process for hydrogen production
    Xu, Jia Yan
    Xue, Xiao Chong
    Wu, Su Fang
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2016, 41 (16) : 6781 - 6786
  • [2] Synthesis of Ni/Al2O3/CaO Composite Catalyst for Hydrogen Production by Steam Reforming of Ethanol
    Chen, C. H.
    Yu, C. T.
    Kuo, H. T.
    Chen, W. H.
    2019 8TH INTERNATIONAL CONFERENCE ON CHEMICAL SCIENCE AND ENGINEERING (ICCSE), 2020, 1580
  • [3] Hydrogen production from glycerol on Ni/Al2O3 catalyst
    Sanchez, Esteban A.
    D'Angelo, Miguel A.
    Comelli, Raul A.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (11) : 5902 - 5907
  • [4] Steam reforming of ethanol for hydrogen production: influence of catalyst composition (Ni/Al2O3, Ni/Al2O3–CeO2, Ni/Al2O3–ZnO) and process conditions
    O. Shtyka
    Z. Dimitrova
    R. Ciesielski
    A. Kedziora
    G. Mitukiewicz
    J. Leyko
    W. Maniukewicz
    A. Czylkowska
    T. Maniecki
    Reaction Kinetics, Mechanisms and Catalysis, 2021, 132 : 907 - 919
  • [5] Correction to: Steam reforming of ethanol for hydrogen production: influence of catalyst composition (Ni/Al2O3, Ni/Al2O3–CeO2, Ni/Al2O3–ZnO) and process conditions
    O. Shtyka
    Z. Dimitrova
    R. Ciesielski
    A. Kedziora
    G. Mitukiewicz
    J. Leyko
    W. Maniukiewicz
    A. Czylkowska
    T. Maniecki
    Reaction Kinetics, Mechanisms and Catalysis, 2021, 134 : 1089 - 1089
  • [6] Improvement of the stability of a ZrO2-modified Ni-nano-CaO sorption complex catalyst for ReSER hydrogen production
    Wu, S. F.
    Wang, L. L.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (13) : 6518 - 6524
  • [7] A study on the stability of a NiO-CaO/Al2O3 complex catalyst by La2O3 modification for hydrogen production
    Feng, H. Z.
    Lan, P. Q.
    Wu, S. F.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (19) : 14161 - 14166
  • [8] Steam reforming of ethanol for hydrogen production: influence of catalyst composition (Ni/Al2O3, Ni/Al2O3-CeO2, Ni/Al2O3-ZnO) and process conditions
    Shtyka, O.
    Dimitrova, Z.
    Ciesielski, R.
    Kedziora, A.
    Mitukiewicz, G.
    Leyko, J.
    Maniukewicz, W.
    Czylkowska, A.
    Maniecki, T.
    REACTION KINETICS MECHANISMS AND CATALYSIS, 2021, 132 (02) : 907 - 919
  • [9] Hydrogen Production by Glycerol Steam Reforming on the Ni/CaO-Al2O3 Catalysts: The Study of Synergistic Effect Between CaO and Al2O3
    Sabokmalek, Saleh
    Alavi, Seyed Mehdi
    Rezaei, Mehran
    Akbari, Ehsan
    CATALYSIS LETTERS, 2023, 153 (12) : 3698 - 3711
  • [10] Hydrogen Production by Glycerol Steam Reforming on the Ni/CaO-Al2O3 Catalysts: The Study of Synergistic Effect Between CaO and Al2O3
    Saleh Sabokmalek
    Seyed Mehdi Alavi
    Mehran Rezaei
    Ehsan Akbari
    Catalysis Letters, 2023, 153 : 3698 - 3711