MECHANISTIC STUDY OF CARBON-DIOXIDE REFORMING WITH METHANE OVER SUPPORTED NICKEL-CATALYSTS

Citation
Zf. Yan et al., MECHANISTIC STUDY OF CARBON-DIOXIDE REFORMING WITH METHANE OVER SUPPORTED NICKEL-CATALYSTS, Energy & fuels, 12(6), 1998, pp. 1114-1120
Citations number
33
Categorie Soggetti
Engineering, Chemical","Energy & Fuels
Journal title
ISSN journal
08870624
Volume
12
Issue
6
Year of publication
1998
Pages
1114 - 1120
Database
ISI
SICI code
0887-0624(1998)12:6<1114:MSOCRW>2.0.ZU;2-R
Abstract
Carbon dioxide reforming with methane to synthesis gas has been invest igated in terms of the effects of active metal loading, feed ratio, an d reaction temperature on catalyst activity and stability employing su pported Ni, Co, add Fe catalysts. Temperature-programmed desorption, t emperature-programmed surface reaction, and X-ray photoelectron spectr oscopy experiments were conducted to elucidate the reaction mechanism. An interesting observation made was that the direct dissociation of m ethane without the involvement of adsorbed or gas-phase CO2 most likel y occurs and that the formation of hydrogen and surface carbon species , which are both primary products of the decomposition of methane, is the key step for the reforming reaction. Carbon monoxide might be the secondary product formed by interaction between surface carbon species and gas-phase or adsorbed CO2. Three surface carbon species C-alpha, C-beta and C-gamma, which are produced by the decomposition of methane , showed various mobility, thermal stability, and reactivity. In the m eantime, the residual partial oxidative NiOx species that were not tho roughly reduced could not migrate on the catalyst surface and be steps wise reduced during the reaction.