Please use this identifier to cite or link to this item: https://repository.seku.ac.ke/handle/123456789/1173
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dc.contributor.authorKing’ondu, Cecil K.-
dc.contributor.authorNjagi, Eric C.-
dc.contributor.authorGenuino, Homer C.-
dc.contributor.authorChen, Chun-Hu-
dc.contributor.authorHorvath, Dayton-
dc.contributor.authorSuib, Steven L.-
dc.date.accessioned2015-04-16T08:51:25Z-
dc.date.available2015-04-16T08:51:25Z-
dc.date.issued2011-06-
dc.identifier.citationInternational Journal of Hydrogen Energy Volume 36, Issue 11, June 2011, Pages 6768–6779en_US
dc.identifier.urihttp://www.sciencedirect.com/science/article/pii/S0360319911004538-
dc.identifier.urihttp://repository.seku.ac.ke/handle/123456789/1173-
dc.descriptiondoi:10.1016/j.ijhydene.2011.02.097en_US
dc.description.abstractMesoporous copper manganese oxides with high surface areas (>268 m2/g) were prepared using the redox method and tested in the preferential oxidation of CO. These materials were highly active and selective under typical operating conditions of a proton-exchange membrane fuel cell. The synthesized catalysts preferentially oxidized CO with a stoichiometric amount of oxygen in the feed gas. The presence of CO2 and H2O in the feed gas retarded catalytic activity significantly at low (<90 °C) temperatures. The catalysts showed stable activity in long-term (12 h) experiments with realistic feeds. The high catalytic activity was attributed to a combination of factors, including high surface area, low crystallinity, low activation energy for CO oxidation, compositional homogeneity of the copper manganese oxides, and the presence of readily available lattice oxygen for CO oxidation. The high selectivity (100% with stoichiometric reactants) was ascribed to the lower activation energy for CO oxidation compared to the activation energy for H2 oxidation.en_US
dc.language.isoenen_US
dc.publisherElsevieren_US
dc.subjectPreferential CO oxidationen_US
dc.subjectPEM fuel cellen_US
dc.subjectCopper manganese oxideen_US
dc.subjectHydrogenen_US
dc.titlePreferential oxidation of CO in H2-rich feeds over mesoporous copper manganese oxides synthesized by a redox methoden_US
dc.typeArticleen_US
Appears in Collections:School of Science and Computing (JA)



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