• Title of article

    Mechanism of CH4 dry reforming by pulse microcalorimetry: Metal nanoparticles on perovskite/fluorite supports with high oxygen mobility

  • Author/Authors

    Vladislav Sadykov، نويسنده , , Vladimir Rogov، نويسنده , , Eugenia Ermakova، نويسنده , , Dmitry Arendarsky، نويسنده , , Natalia Mezentseva، نويسنده , , Galina Alikina، نويسنده , , Natalia Sazonova، نويسنده , , Aleksei Bobin، نويسنده , , Svetlana Pavlova، نويسنده , , Yves Schuurman، نويسنده , , Claude Mirodatos، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    27
  • To page
    34
  • Abstract
    The mechanism of CH4 dry reforming on Pt, Ru, Ni, Ni + Ru-supported perovskite (PrFeOx, LaPrMnCrOx) or fluorite (LnCeZrOx) oxides was studied using a Setaram Sensys DSC TG calorimeter and a pulse kinetic installation. For catalysts in the steady-state, CH4 and CO2 transformation in separate pulses proceeds with the rate and products selectivity equal to that in mixed CO2 + CH4 pulses. Heat effects of separate stages correspond to CH4 oxidation into syngas by strongly bound bridging oxygen forms of support (heat of adsorption up to 650 kJ mol−1 O2 for fluorites and ∼500 kJ mol−1 O2 for perovskites) and their replenishment by CO2 dissociation, respectively. These features demonstrate a step-wise red-ox (Mars-van-Crevelen) mechanism of CH4 dry reforming. Fast oxygen transfer from the sites of oxide support to the metal/oxide interface provides required conjugation of stages.
  • Keywords
    Bonding strength and reactivity of oxygen species , Pulse microcalorimetry , CH4 dry reforming , Metal clusters , redox mechanism , Perovskite and fluorite oxide supports
  • Journal title
    Thermochimica Acta
  • Serial Year
    2013
  • Journal title
    Thermochimica Acta
  • Record number

    1200584