Steam reforming of methane mixtures with ethylene over an industrial nickel catalyst

被引:0
|
作者
L. P. Didenko
V. I. Savchenko
V. S. Arutyunov
L. A. Sementsova
机构
[1] Russian Academy of Sciences,Institute of Problems of Chemical Physics
[2] Russian Academy of Sciences,Semenov Institute of Chemical Physics
来源
Petroleum Chemistry | 2008年 / 48卷
关键词
Steam; Petroleum Chemistry; Methane Conversion; Coke Formation; Steam Reform;
D O I
暂无
中图分类号
学科分类号
摘要
Steam reforming of methane mixtures with ethylene (1.4–3.8 vol % C2H4) in the presence of the industrial nickel catalyst S11-9-09 (12.8 wt % Ni/α-Al2O3) at 750°C was studied. It was shown that the addition of ethylene to the methane-steam mixture reduces the conversion of methane to carbon oxides and increases coke formation. The unfavorable effect of ethylene on the reaction decreases with an increase in the ratio of the catalytic surface area to the free reaction volume. Presumably, this effect is caused by an increase in the contribution of the heterogeneous component of steam reforming, a change that results in an increase in the rate of the interaction of the formed coke with steam.
引用
收藏
页码:22 / 27
页数:5
相关论文
共 50 条
  • [21] Catalyst design for methane steam reforming
    Arcotumapathy, Viswanathan
    Vo, Dai-Viet N.
    Chesterfield, Dean
    Tin, Cao T.
    Siahvashi, Arman
    Lucien, Frank P.
    Adesina, Adesoji A.
    [J]. APPLIED CATALYSIS A-GENERAL, 2014, 479 : 87 - 102
  • [22] Steam reforming of methane over nickel catalysts at low reaction temperature
    Matsumura, Y
    Nakamori, T
    [J]. APPLIED CATALYSIS A-GENERAL, 2004, 258 (01) : 107 - 114
  • [23] EFFECTS OF POTASSIUM ADDITION ON THE PERFORMANCE OF A NICKEL MAGNESIA CATALYST FOR STEAM REFORMING OF METHANE
    KITABAYASHI, S
    OGINO, Y
    YAMAZAKI, T
    OZAWA, S
    [J]. STUDIES IN SURFACE SCIENCE AND CATALYSIS, 1993, 75 : 2051 - 2054
  • [24] Properties of nickel mesh as a methane steam reforming catalyst and its application in SOFCs
    Flesch, U
    Dahl, R
    Peters, R
    Stöver, D
    [J]. SOLID OXIDE FUEL CELLS (SOFC VI), 1999, 99 (19): : 612 - 620
  • [25] Differences in the Nature of Active Sites for Methane Dry Reforming and Methane Steam Reforming over Nickel Aluminate Catalysts
    Rogers, Jessica L.
    Mangarella, Michael C.
    D'Amico, Andrew D.
    Gallagher, James R.
    Dutzer, Michael R.
    Stavitski, Eli
    Miller, Jeffrey T.
    Sievers, Carsten
    [J]. ACS CATALYSIS, 2016, 6 (09): : 5873 - 5886
  • [26] The application of inelastic neutron scattering to investigate the steam reforming of methane over an alumina-supported nickel catalyst
    McFarlane, Andrew R.
    Silverwood, Ian P.
    Norris, Elizabeth L.
    Ormerod, R. Mark
    Frost, Christopher D.
    Parker, Stewart F.
    Lennon, David
    [J]. CHEMICAL PHYSICS, 2013, 427 : 54 - 60
  • [27] The steam reforming of naphthalene over a nickel-dolomite cracking catalyst
    Wang, TJ
    Chang, J
    Wu, CZ
    Fu, Y
    Chen, Y
    [J]. BIOMASS & BIOENERGY, 2005, 28 (05): : 508 - 514
  • [28] Tri-reforming of Methane over a Hydroxyapatite Supported Nickel Catalyst
    Phan, Thanh Son
    Minh, Doan Pham
    [J]. CHEMCATCHEM, 2024, 16 (16)
  • [29] Pure hydrogen production by steam reforming of methane mixtures with various propane contents in a membrane reactor with the industrial nickel catalyst and a Pd-Ru alloy foil
    Didenko, L. P.
    Sementsova, L. A.
    Chizhov, P. E.
    Dorofeeva, T., V
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (48) : 26396 - 26404
  • [30] Steam reforming of methane over Ni catalyst in micro-channel reactor
    Zhai, Xuli
    Cheng, Yinhong
    Zhang, Zhongtao
    Jin, Yong
    Cheng, Yi
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2011, 36 (12) : 7105 - 7113