• Title of article

    Fischer–Tropsch synthesis over γ-alumina-supported cobalt catalysts: Effect of support variables

  • Author/Authors

    ?yvind Borg، نويسنده , , Sigrid Eri، نويسنده , , Edd A. Blekkan، نويسنده , , S?lvi Stors?ter، نويسنده , , Hanne Wigum، نويسنده , , Erling Rytter، نويسنده , , Anders Holmén، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    12
  • From page
    89
  • To page
    100
  • Abstract
    A systematic study of the effect of γ-Al2O3 support variables on Fischer–Tropsch synthesis activity and selectivity was carried out at industrially relevant conditions (image, image, image). A total of 13 catalysts were prepared by incipient wetness impregnation of γ-Al2O3 supports of varying pore characteristics and chemical purities with aqueous solutions containing the required amounts of cobalt and rhenium precursor to give nominal loadings of 20 and 0.5 wt%, respectively. The catalysts were analysed for cobalt, rhenium, nitrogen, and sodium and characterised by nitrogen adsorption/desorption, mercury intrusion, X-ray diffraction, hydrogen chemisorption, temperature-programmed reduction, and oxygen titration. The size of the Co3O4 cobalt particles was controlled by the support pore size, with small particles formed in narrow pores and large particles formed in wide pores. The degree of reduction increased with increasing catalyst pore size and Co3O4 particle size. The catalysts contained different amounts of sodium (20–113 ppm) and the site-time yield decreased with increasing sodium content. Positive correlations were found between cobalt particle size and C5+ selectivity and between catalyst pore size and C5+ selectivity. The results indicate that the C5+ selectivity is controlled by the size and appearance of cobalt particles.
  • Keywords
    Surface reduction , Oxygen vacancies , Selective oxidation , Cation segregation , Ab initio thermodynamics , Peroxy , DFT , Iron antimonate
  • Journal title
    Journal of Catalysis
  • Serial Year
    2007
  • Journal title
    Journal of Catalysis
  • Record number

    1225079