Title of article
Fischer–Tropsch synthesis over alumina-supported molybdenum carbide catalyst Original Research Article
Author/Authors
Dai-Viet N. Vo، نويسنده , , Adesoji A. Adesina، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
12
From page
221
To page
232
Abstract
Alumina-supported molybdenum carbide catalyst prepared by temperature-programmed carburization has been evaluated for Fischer–Tropsch synthesis between 473 K and 515 K with feed gas containing H2/CO = 1:5–5:1. Optimum CO consumption rate was found at H2 mole fraction of 0.67 for all temperatures suggesting that similar FT mechanism was operative over the temperature range studied. Associated Arrhenius parameters revealed that activation energy values varied between 51 kJ mol−1 and 158 kJ mol−1. Olefin-to-paraffin ratio (ROP) initially rose with carbon number, n, to a maximum value followed by a tailing drop. A mechanism involving molecular CO chemisorption with gas phase H2 attack to yield enolic species was used to develop a kinetic model that adequately captured individual hydrocarbon species as well as the behaviour of the ROP with composition. Combination of the kinetic model with the nonlinear ROP model permitted, for the first time, estimation of the separate intrinsic activation energy values for termination to olefin and paraffin on the catalyst surface.
Keywords
Temperature-programmed carburization , Molybdenum carbide , Fischer–Tropsch synthesis
Journal title
Applied Catalysis A:General
Serial Year
2011
Journal title
Applied Catalysis A:General
Record number
1156367
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