• Title of article

    Alumina support-stabilized nanoscaled vanadium–phosphorous mixed oxides as new catalysts for propane ammoxidation Original Research Article

  • Author/Authors

    Ewelina Mikolajska، نويسنده , , Elizabeth Rojas Garcia، نويسنده , , Ricardo L?pez Medina، نويسنده , , Anna E. Lewandowska، نويسنده , , José Luis G. Fierro، نويسنده , , Miguel A. Ba?ares، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    10
  • From page
    93
  • To page
    102
  • Abstract
    Much attention has recently been devoted to the surface of bulk catalysts. It has been proved that the most critical phenomena occur at the surface, which differs significantly from the bulk. To evaluate the role of the bulk in VPO catalyst, vanadium and phosphorus were supported on γ-alumina by incipient wetness impregnation at a total V + P of two monolayers so that nanoscaled VPO phases (n-VPO) form on alumina, such size maximizes the surface-to-bulk ratio. Alumina support stabilizes V5+, which may be reduced, while V4+ predominates in bulk vanadyl pyrophosphate phase. In addition, the support modifies acid–base and textural properties. The presence of VPO nanocrystals supported on alumina (n-VPO) facilitates investigating the interaction between alumina-dispersed vanadia and VPO-lattice vanadium ions. Both, bulk and supported phases are active for propane ammoxidation affording acrylonitrile yields of 41% and 48%, respectively, at 500 °C. The yield to acrylonitrile per mass unit of VPO increases by 150% at 500 °C in the alumina-stabilized n-VPO system when compared to the bulk VPO.
  • Keywords
    Support stabilized nanoscaled VPO , Propane , Ammoxidation , Acrylonitrile , Surface vanadium oxide , Alumina , Vanadium phosphates
  • Journal title
    Applied Catalysis A:General
  • Serial Year
    2011
  • Journal title
    Applied Catalysis A:General
  • Record number

    1156497