Catalytic activity and crystal structure modification of Pd/γ-Al_2O_3–TiO_2 catalysts with different

来源 :Journal of Energy Chemistry | 被引量 : 0次 | 上传用户:sonim0
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Pd/γ-Al_2O_3–TiO_2 catalysts containing various compositions of titania and alumina were prepared by sol–gel and wet-impregnation methods in attempt to study the particle size, nature of phases, morphology and structure of the composite samples. The ethanol oxidation experiments, N_2 adsorption–desorption,FTIR, XRD and XPS were conducted, and the effects of Al_2O_3 content on the surface area, phase transformation and structural properties of TiO_2 were investigated. The optimal value of ethanol conversion appeared on Pd/Al(0.05)–Ti and Pd/Al(0.90)–Ti catalysts irrespective of the ethanol oxidation temperature, and we call this as a double peaks phenomenon of catalytic activity. The XRD results reveal that the phase composition and crystallite size of the mixed oxides depend on Al_2O_3/TiO_2 ratio and calcination temperature. Al_2O_3 can effectively prevent the agglomeration of TiO_2 and this can be ascribed to the formation of Al–O–Ti chemical bonds in Al_2O_3–TiO_2 crystals. Binding energy and Pd surface concentration of the catalysts were modified apparently, which may also lead to catalyst activity changes. Pd / γ-Al_2O_3-TiO_2 catalysts containing various compositions of titania and alumina were prepared by sol-gel and wet-impregnation methods in attempt to study the particle size, nature of phases, morphology and structure of the composite samples. , N_2 adsorption-desorption, FTIR, XRD and XPS were conducted, and the effects of Al 2 O 3 content on the surface area, phase transformation and structural properties of TiO 2 were investigated. Ti and Pd / Al (0.90) -Ti catalysts irrespective of the ethanol oxidation temperature, and we call this as a double peaks phenomenon of catalytic activity. The XRD results reveal that the phase composition and crystallite size of the mixed oxides depend on Al 2 O 3 / TiO_2 ratio and calcination temperature. Al_2O_3 can effectively prevent the agglomeration of TiO_2 and this can be ascribed to the formation of Al-O-Ti chemical bonds in Al_2O_3-TiO_2 c rystals. Binding energy and Pd surface concentration of the catalysts were modified apparently, which may also lead to catalyst activity changes.
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