Ciencias,UNAM

Catalytic combustion of dry carbon monoxide by external power activation

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dc.contributor.author Prince, JC
dc.contributor.author Treviño, C
dc.date.accessioned 2011-01-22T10:27:35Z
dc.date.available 2011-01-22T10:27:35Z
dc.date.issued 2000
dc.identifier.issn 0039-6028
dc.identifier.uri http://hdl.handle.net/11154/3284
dc.description.abstract The catalytic combustion of dry carbon monoxide and air in a planar stagnation-point flow over a platinum foil with external power is studied in this paper. The reduced heterogeneous kinetics are modelled with the dissociative adsorption of the molecular oxygen and the non-dissociative adsorption of CO, together with a surface reaction of the Langmuir-Hinshelwood type and the desorption reaction of the adsorbed product, CO2(s). The resulting governing equations have been numerically integrated and the whole S-shaped response curve has been obtained as a function of the mixture initial concentration. The critical conditions for the catalytic ignition and extinction are deduced using high activation energy asymptotics of the desorption kinetics of the most efficient adsorbed reactant, CO(s). We obtained a very good agreement between the numerical and asymptotic results for the ignition and extinction conditions. In general, the ignition process can be well modelled without reactant consumption, while extinction occurs in the partial diffusion-controlled regime, with a finite non-zero concentration of carbon monoxide close to the plate. (C) 2000 Published by Elsevier Science B.V. All rights reserved. en_US
dc.language.iso en en_US
dc.title Catalytic combustion of dry carbon monoxide by external power activation en_US
dc.type Article en_US
dc.identifier.idprometeo 2558
dc.source.novolpages 449(40603):61-74
dc.subject.wos Chemistry, Physical
dc.subject.wos Physics, Condensed Matter
dc.description.index WoS: SCI, SSCI o AHCI
dc.subject.keywords carbon monoxide
dc.subject.keywords catalysis
dc.subject.keywords models of surface chemical reactions
dc.subject.keywords surface energy
dc.relation.journal Surface Science

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