Investigations on Some Titania Supported Catalysts

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Investigations on Some Titania Supported Catalysts

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dc.contributor.author Ahmed Yasir,Vakayil
dc.contributor.author Mohan Das,P N
dc.contributor.author Mohammed Yusuff, K K
dc.date.accessioned 2008-05-22T06:55:11Z
dc.date.available 2008-05-22T06:55:11Z
dc.date.issued 2001
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/38
dc.description.abstract Titania is a versatile metal oxide with multiple applications. Titania supported catalysts are reported to be much more active compared to conventional silica or alumina supported ones in some reactions. TiO2 (anatase) having high surface area, with better crystallinity and high onset temperature of rutilation can be prepared by thermal hydrolysis of titanyl sulfate solution under controlled conditions. Calcinations at 350oC for 6 hrs were necessary to crystallize anatase. Method of preparation and percentage of the loaded metal oxides have greater influence on surface area. Drastic decrease in surface area was observed upon rutilation. Rutilation started at different temperatures depending on the metal oxide and the method of preparation. TiO2 should be characterized with high surface area, phase purity and high onset temperature of rutilation.Which should be well above the optimum temperature of a designated reaction in which it is employed as a catalyst. Variation in physical properties, depending upon the method of preparation is greater in TiO2 supported catalysts. Methanation activity was found to be highly dependent on nickel concentration present on the surface of the pellets. The methanation activity is strongly influenced by support material. The rate and turn over frequency of methanation and toluene oxidation activity of these catalysts are also equally important from an industrial point of view. en_US
dc.language.iso en en_US
dc.publisher Department of Applied Chemistry en_US
dc.subject Titania en_US
dc.subject Crystallinity en_US
dc.subject Rutilation en_US
dc.subject Methanation activity en_US
dc.title Investigations on Some Titania Supported Catalysts en_US
dc.type Thesis en_US


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