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Developing Nanoparticles for decomposition of toxic compounds: Synthesis of Semiconductor Nanoparticles Applied in Photocatalysis for the Degradation of Pollutants in Aqueous and Gas Phase - Softcover

 
9783838119533: Developing Nanoparticles for decomposition of toxic compounds: Synthesis of Semiconductor Nanoparticles Applied in Photocatalysis for the Degradation of Pollutants in Aqueous and Gas Phase
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This study has been focused on the development of semiconductor nanoparticles applied in photocatalysis. The photoactivity of the photocatalyst TiO2 under UV light is well known, however, this technique still has limited applications due to the relatively low photoactivity under visible light. There are different methods to increase the photoactivity of a photocatalyst, like the photodeposition of noble metals on the surface of the semiconductor, by doping or by photosensitization. Here the synthesis of different photocatalysts and their stability, which were tested to check the durability and performance after photocatalytic experiments, are introduced. Showing for example the pollutant decomposition capacity under visible light of the S-doped TiO2-Fe-III photocatalyst. It should be strongly considered for remediation of real contaminated water and polluted atmospheric conditions by solar energy irradiation.

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Recently Dr. Menendez joined a research group in Japan, obtained his PhD degree from the University of Hannover Germany. Owns a M. Sc. degree from the National Autonomous University of México in Environmental Chemical Engineering and egressed from same University as a Chemical Engineer. Studied in the Alexander v. Humboldt in México.

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Book Description Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This study has been focused on the development of semiconductor nanoparticles applied in photocatalysis. The photoactivity of the photocatalyst TiO2 under UV light is well known, however, this technique still has limited applications due to the relatively low photoactivity under visible light. There are different methods to increase the photoactivity of a photocatalyst, like the photodeposition of noble metals on the surface of the semiconductor, by doping or by photosensitization. Here the synthesis of different photocatalysts and their stability, which were tested to check the durability and performance after photocatalytic experiments, are introduced. Showing for example the pollutant decomposition capacity under visible light of the S-doped TiO2-Fe-III photocatalyst. It should be strongly considered for remediation of real contaminated water and polluted atmospheric conditions by solar energy irradiation. 188 pp. Englisch. Seller Inventory # 9783838119533

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