Title of article :
Mechanistic pathway for methane formation over an iron-based catalyst
Author/Authors :
Nilenindran S. Govender، نويسنده , , F. Gideon Botes، نويسنده , , Mart H.J.M. de Croon، نويسنده , , Jaap C. Schouten، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
8
From page :
254
To page :
261
Abstract :
The methanation reaction mechanism under Fischer–Tropsch conditions is investigated with the Steady State Isotopic Transient Kinetic Analysis (SSITKA) technique over a precipitated iron-based catalyst. The 13CH4 transients resulting from a image switch (330 °C, 1.2 bar, and image) provided kinetic information for the methanation reaction. Six methanation models were screened and only three of these could describe the methane transient. These models were subsequently extended to account for the Fischer–Tropsch higher hydrocarbon products by considering Csingle bondC coupling reactions and the kinetic rate parameters were estimated. The result was two indistinguishable mechanisms which could describe the methane transient as well as the experimental steady-state concentrations. Both mechanisms have two active pools of carbon (image and image) on the catalyst surface with both leading towards the formation of methane. The image pool is 25 to 50 times less active than the image pool for methanation and occupies 92% of the total CHx coverage (0.25 ML). The Csingle bondC coupling reaction was shown to involve both the image and image pools. The concentration of molecularly adsorbed CO on the Fe-based catalyst is shown to be extremely low, with an estimated surface coverage of image.
Keywords :
asymmetric hydrogenation , Platinum , Cinchona alkaloids , Methyl benzoylformate , Ketopantolactone , Pyruvic aldehyde dimethyl acetal , Continuous-flow fixed-bed-reactor , Origin of rate enhancement , Ligand acceleration
Journal title :
Journal of Catalysis
Serial Year :
2008
Journal title :
Journal of Catalysis
Record number :
1225566
Link To Document :
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