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Methane steam reforming analysis in a palladium-based catalytic membrane reactor

Journal Article · · Industrial and Engineering Chemistry Research
DOI:https://doi.org/10.1021/ie970033w· OSTI ID:536424
 [1];  [2]; ;  [3];  [1]
  1. CNR, Rende (Italy). Inst. of Research on Membranes and Chemical Reactors Modeling
  2. CR ENEA Frascati (Italy)
  3. Univ. of Calabria, Rende (Italy). Dept. of Chemical Engineering and Materials
The methane steam reforming in a catalytic membrane reactor has been studied. A previous theoretical study of this reaction has been carried out. In the model a global kinetic rate as a function of three reactions over nickel catalyst as proposed by Xu and Froment has been considered. It has been shown that the counterflow configuration has, at high temperature (500 C), a marginal advantage on parallel flow and, also, that the space velocity cannot be considered a design variable for membrane reactors. A laboratory plant was realized utilizing membranes of Pd and Pd/Ag supported on Al{sub 2}O{sub 3}. The Pd membranes utilized have been prepared using the co-condensation technique and the electroless plating method. A comparison of the overall membrane performance has also been carried out. The experiments were aimed to study the effects of several parameters such as temperature, feed flow rate, and feed molar ratio on the methane conversion. The experimental results have been compared with the data predicted by the previously developed theoretical model.
OSTI ID:
536424
Journal Information:
Industrial and Engineering Chemistry Research, Journal Name: Industrial and Engineering Chemistry Research Journal Issue: 8 Vol. 36; ISSN IECRED; ISSN 0888-5885
Country of Publication:
United States
Language:
English

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