CeαMn1-αO2 CATALYSTS SUPPORTED over g-Al2O3 PREPARED by MODIFIED REDOX-COPRECIPITATION METHODS for n-HEXANE COMBUSTION
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Sociedade Brasileira de Quimica
Acceso al texto completo solo para la Comunidad PUCP
Abstract
A series of Ce Mn 1- O 2 catalysts supported on g-alumina with various molar concentrations of Ce (, from 0 to 0.90) was synthesized by coprecipitation, applying two different precipitating agents, namely, sodium hydroxide (method 1) and sodium carbonate (method 2), with the use of sodium permanganate as a redox agent for precipitation. XRD profiles of the supported samples revealed the predominant abundance of a typical fluorite crystalline structure. TPR thermograms of supported samples were displaced towards lower temperatures with increasing Mn concentration, in contrast with the bulk samples. The supported Ce-Mn samples exhibited a greater performance in n-hexane elimination than did the corresponding simple oxides. The sample Ce 0.33 Mn 0.67 O 2 obtained by method 2 presented the best activity, probably due to the enrichment of Ce 4+ , Mn 3+ and Mn 4+ surface species, an excess of superficial oxygen species and an easy reducibility as well as the lowest apparent activation energy.
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Coprecipitation, Catalysis, Redox, Hexane, Combustion, Chemistry, Catalytic combustion, Chemical engineering, Inorganic chemistry, Materials science, Organic chemistry
