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催化膜和催化膜反应器:整合的高效和环保催化过程
引用本文:Enrico DRIOLI,Enrica FONTANANOVA,Marcella BONCHIO,Mauro CARRARO,Martino GARDAN,Gianfranco SCORRANO. 催化膜和催化膜反应器:整合的高效和环保催化过程[J]. 催化学报, 2008, 29(11): 1152-1158
作者姓名:Enrico DRIOLI  Enrica FONTANANOVA  Marcella BONCHIO  Mauro CARRARO  Martino GARDAN  Gianfranco SCORRANO
作者单位:DV Sokolsky Institute of Organic Catalysis and Electrochemistry, 142 Kunaev str, Almaty, 050010, Kazakhstan
基金项目:Ministero dell'Istruzione dell'Università e della Ricerca
摘    要: The design of new heterogeneous photooxygenation systems able to employ visible light, oxygen, mild temperatures, and solvent with a low environmental impact has been investigated. In particular, the heterogenization of decatungstate (W10O4-32), a polyoxometalate with photocatalytic activity in oxidation reactions, has been carried out in polymeric membranes of polyvinylidenefluoride. The polymeric catalytic membranes prepared by phase inversion technique have been successfully applied in the aerobic mineralization of phenol in water, which was used as an example of organic pollutant. In order to evaluate the effect of the polymeric environment on the overall catalyst behavior, we have also heterogenized the decatungstate (opportunely functionalized) in perfluorinated membrane made of Hyflon. The photocatalytic composite membranes are characterized by different and tuneable properties depending on the nature of the polymeric micro-environment, in which the catalyst is confined. Moreover, the selective separation function of the membrane results in enhanced performance in comparison with homogeneous reactions.

关 键 词:catalytic membrane  catalytic membrane reactor  catalyst heterogenization  decatungstate  polyvinylidenefluoride  Hyflon  phenol degradation
收稿时间:2008-11-25

Catalytic Membranes and Catalytic Membrane Reactors: An Integrated Approach to Catalytic Process with a High Efficiency and a Low Environmental Impact
Enrico DRIOLI,Enrica FONTANANOVA,Marcella BONCHIO,Mauro CARRARO,Martino GARDAN,Gianfranco SCORRANO. Catalytic Membranes and Catalytic Membrane Reactors: An Integrated Approach to Catalytic Process with a High Efficiency and a Low Environmental Impact[J]. Chinese Journal of Catalysis, 2008, 29(11): 1152-1158
Authors:Enrico DRIOLI  Enrica FONTANANOVA  Marcella BONCHIO  Mauro CARRARO  Martino GARDAN  Gianfranco SCORRANO
Abstract:The design of new heterogeneous photooxygenation systems able to employ visible light, oxygen, mild temperatures, and solvent with a low environmental impact has been investigated. In particular, the heterogenization of decatungstate (W10O4-32), a polyoxometalate with photocatalytic activity in oxidation reactions, has been carried out in polymeric membranes of polyvinylidenefluoride. The polymeric catalytic membranes prepared by phase inversion technique have been successfully applied in the aerobic mineralization of phenol in water, which was used as an example of organic pollutant. In order to evaluate the effect of the polymeric environment on the overall catalyst behavior, we have also heterogenized the decatungstate (opportunely functionalized) in perfluorinated membrane made of Hyflon. The photocatalytic composite membranes are characterized by different and tuneable properties depending on the nature of the polymeric micro-environment, in which the catalyst is confined. Moreover, the selective separation function of the membrane results in enhanced performance in comparison with homogeneous reactions.
Keywords:catalytic membrane  catalytic membrane reactor  catalyst heterogenization  decatungstate  polyvinylidenefluoride  Hyflon  phenol degradation
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