• Title of article

    Modeling the high-temperature catalytic partial oxidation of methane over platinum gauze: Detailed gas-phase and surface chemistries coupled with 3D flow field simulations Original Research Article

  • Author/Authors

    Ra?l Quiceno، نويسنده , , Javier Pérez-Ram?rez، نويسنده , , Jürgen Warnatz، نويسنده , , Olaf Deutschmann، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    11
  • From page
    166
  • To page
    176
  • Abstract
    The high-temperature catalytic partial oxidation (CPO) of methane over a platinum gauze reactor was modeled by three-dimensional numerical simulations of the flow field coupled with heat transport as well as detailed gas-phase and surface reaction mechanisms. Model results agree well with data of CPO experiments over Pt-gauzes in the literature, confirming the presence of strong mass and heat-transport limitations. The conversions of CH4 and O2 increase with an increased contact time and were practically constant in the temperature range of 1000–1200 K. The selectivity to CO linearly increases with temperature. H2 was only observed above 1200 K, below this temperature H2O was the only hydrogen-containing product. The contribution of heterogeneous steps in the overall process is prominent, but in the later stages of the reactor, gas-phase reactions become significant at certain conditions of temperature, pressure, and residence time. For example, simulations predicted some gas-phase production of ethane and ethylene via methane oxidative coupling at elevated pressure and residence time. The study shows that todayʹs CFD tools allow the implementation of detailed homogeneous and heterogeneous reaction schemes even for complex catalyst geometries.
  • Keywords
    Methane partial oxidation , Pt metal gauze , CFD , Reaction mechanisms , Modeling
  • Journal title
    Applied Catalysis A:General
  • Serial Year
    2006
  • Journal title
    Applied Catalysis A:General
  • Record number

    1152618