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  4. Fourier transform infrared spectroscopic study of carbon dioxide methanation on supported ruthenium
 
research article

Fourier transform infrared spectroscopic study of carbon dioxide methanation on supported ruthenium

Prairie, Michael R.
•
Renken, Albert  
•
Highfield, James G.
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1991
Journal of Catalysis

Diffuse-reflectance IR Fourier transform (DRIFT) spectroscopy was used to study in situ, the low-temp. (T <200 Deg) methanation of CO2 over Ru on TiO2 and on Al2O3 supports. For 3.8% Ru/TiO2, the reaction exhibits an activation energy (Ea) of 19 kcal/mol, is 0.43 +- 0.05 order in H2 concn., and essentially independent of CO2 concn. At 110 Deg, 40% of the available metal sites are occupied by CO (qCO = 0.4), a known methanation intermediate. In contrast to Ru/TiO2, Ru/Al2O3, despite having the same Ea and qCO = 0.2, is 15 times less active. Batch catalyst screening expts. showed no dependence of methanation activity on adsorbed CO(COa) formation rate (as modeled by HCOOH dehydration) or on qCO. In view of this, and the fact that CO dissocn. is structure-sensitive, heterogeneity in the active sites is invoked to reconcile the data. The high Ru dispersion on TiO2 is believed to contribute to the enhanced activity over this support. Adsorbed CO2 and H2 react, possibly at the metal-support interface, to form COa via rapid equilibration of the reverse water-gas shift reaction, in which HCOOH (and/or HCOO- ion) play a major role. According to this view, the COa and HCOOa- intermediates seen by FTIR represent accumulated reservoirs en route to CH4, in which the COa hydrogenation step is rate-controlling. An interesting synergy occurs for mixts. of Ru/anatase and Ru/rutile, the former being a better catalyst for COa supply while the latter is more effective in COa hydrogenation. [on SciFinder (R)]

  • Details
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Type
research article
DOI
10.1016/0021-9517(91)90017-X
Web of Science ID

WOS:A1991FG05000016

Author(s)
Prairie, Michael R.
Renken, Albert  
Highfield, James G.
Thampi, K. Ravindranathan  
Graetzel, Michael  
Date Issued

1991

Published in
Journal of Catalysis
Volume

129

Issue

1

Start page

130

End page

44

Subjects

Kinetics of methanation; Methanation (of carbon dioxide

•

on ruthenium-alumina or -titania catalysts

•

effect of support material on); Methanation catalysts (ruthenium-alumina or -titania

•

for carbon dioxide

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effect of support material on activity of)

•

carbon dioxide methanation kinetics ruthenium catalyst; titania ruthenium catalyst methanation carbon dioxide; alumina ruthenium catalyst methanation carbon dioxide

Note

CAN 114:206293 22-4 Physical Organic Chemistry Inst. Chem. Eng.,Swiss Fed. Inst. Technol.,Lausanne,Switz. Journal 0021-9517 written in English. 7440-18-8 (Ruthenium) Role: CAT (Catalyst use), USES (Uses) (catalysts from alumina or titania and, for methanation of carbon dioxide, effect of support material on activity of); 13463-67-7 (Titania) Role: CAT (Catalyst use), USES (Uses) (catalysts from ruthenium and, for methanation of carbon dioxide, effect cryst. phase of support material on activity of); 124-38-9 (Carbon dioxide) Role: RCT (Reactant), RACT (Reactant or reagent) (methanation of, on ruthenium-alumina or -titania catalysts, kinetics and mechanism of, effect of support material on)

Editorial or Peer reviewed

REVIEWED

Written at

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Available on Infoscience
April 18, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/229376
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