• Title of article

    SBA-15 supports modified by Ti and Zr grafting for NiMo hydrodesulfurization catalysts

  • Author/Authors

    Oliver Y. Gutiérrez، نويسنده , , Gustavo A. Fuentes، نويسنده , , Cecilia Salcedo، نويسنده , , Tatiana Klimova، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    13
  • From page
    485
  • To page
    497
  • Abstract
    A series of Ti- and Zr-containing mesoporous SBA-15 supports and their respective NiMo catalysts were prepared to study the effect of the Ti and Zr loading into the support on the characteristics of Ni and Mo surface species and their catalytic activity in the 4,6-dimethyldibenzothiophene hydrodesulfurization (HDS). Ti and Zr-containing SBA-15 solids with different metal loading (up to 19 wt.% of TiO2 or 22 wt.% of ZrO2) were prepared by chemical grafting. The solids prepared were characterized by N2 physisorption, X-ray diffraction (XRD), UV–vis diffuse reflectance spectroscopy (DRS), temperature-programmed reduction (TPR), chemical analysis and HRTEM. The results show that Ti- and Zr-SBA-15 supports with highly dispersed Ti and Zr species can be obtained without substantial loss of SBA-15 characteristics. Zr grafted species showed somewhat better dispersion on the SBA-15 surface than the corresponding Ti counterparts. It was found that TiO2 and, especially, ZrO2 incorporation in the SBA-15 support leads to stronger interaction of Mo and Ni species with the support providing better dispersion to the oxidic and sulfided metal species (XRD, TPR, HRTEM). NiMo catalysts supported on Ti- and Zr-containing SBA-15 showed high activity in 4,6-dimethyldibenzothiophene HDS. It can be concluded therefore that SBA-15 materials grafted with Ti or Zr species show promising features as supports for Mo-based hydrotreating catalysts.
  • Keywords
    SBA-15 , Titania , Mesoporous molecular sieves , Zirconia , Chemical grafting , NiMo catalysts , 4 , Hydrodesulfurization , 6-Dimethyldibenzothiophene
  • Journal title
    CATALYSIS TODAY
  • Serial Year
    2006
  • Journal title
    CATALYSIS TODAY
  • Record number

    1235352