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Influence of surface polymeric oxide species on the product distribution in the aromatization of isophorone on alumina supported vanadia and molybdena catalysts
Authors:P S Sai Prasad  N Lingaiah  G S Salvapathy and P Kanta Rao
Institution:(1) Catalysis Section, Inorganic and Physical Chemistry Division, Indian Institute of Chemical Technology, 500 007 Hyderabad, India
Abstract:Polymeric oxide species possessing high Brönsted acidity formed on V2O5/Al2O3 and MoO3/Al2O3 are found to be responsible for the transformation of isophorone to isoxylitones. Improved selectivity to 3,5-xylenol, with the addition of K2O as promoter substantiates this observation.CT Communication No. 3077
Keywords:Aromatization  isophorone  3  5-xylenol  polymeric vanadia and molybdena
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