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Environmental photocatalysis:Perspectives for China 被引量:4

Environmental photocatalysis:Perspectives for China
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摘要 Photocatalysis is based on the double aptitude of the photocatalyst(essentially titania) to simultaneously adsorb reactants and absorb efficient photons.Heterogeneous photocatalysis is able to be efficient in Fine,"Green" and Environmental Chemistry.Photocatalysis induces mild oxidations in the absence of water by generating active neutral atomic O* species.For instance,the oxidation of 4-tert-butyl-toluene is 100% selective in 4-tert-butyl-benzaldehyde.In water treatment,many toxic inorganic ions are oxidized in their harmless upper oxidized state.The elimination of organic pollutants is the main field of water photocatalytic decontamination.Most of aliphatic and aromatic pollutants are totally mineralized into CO2 and innocuous inorganic anions.More complex molecules,such as pesticides(herbicides,insecticides,fungicides,etc.) or dyes,are totally destroyed.Another example of green chemistry is the total degradation of dyes in water,in particular for the azo-dyes,with 100% selective degradation of -N=N-azo-groups into di-nitrogen.Photocatalysis is also active in the "bio-world" by killing bacteria(E.Coli,streptococcus,etc.) in water without re-growth.Air pollutants can also be destroyed,especially all the VOC's(volatile organic compounds),providing certain air humidity enabling titania to produce cracking OH* radicals.For chemical engineering reasons,the photocatalyst has to be fixed on a photo-inert support.In these conditions,UV-irradiated titania-based photocatalysis could be applied to the elimination of air pollutants,VOC's,solvents,odors,chemicals,etc.Air treatment has to be associated with water and solid waste treatment because of odors.This is conducted by covering water treatment ponds or lagunas by rafts on which large sheets of Ahlstrom paper are deposited,supporting titania associated with activated carbon.Eventually,virus AH5N2,a model virus close to H5N1,responsible for the avian flu could be totally inactivated.Photocatalysis is directly connected with all 12 principles of Green Chemistry defined by Anastas(1998) and possesses open perspectives for China. Photocatalysis is based on the double aptitude of the photocatalyst(essentially titania) to simultaneously adsorb reactants and absorb efficient photons.Heterogeneous photocatalysis is able to be efficient in Fine,"Green" and Environmental Chemistry.Photocatalysis induces mild oxidations in the absence of water by generating active neutral atomic O* species.For instance,the oxidation of 4-tert-butyl-toluene is 100% selective in 4-tert-butyl-benzaldehyde.In water treatment,many toxic inorganic ions are oxidized in their harmless upper oxidized state.The elimination of organic pollutants is the main field of water photocatalytic decontamination.Most of aliphatic and aromatic pollutants are totally mineralized into CO2 and innocuous inorganic anions.More complex molecules,such as pesticides(herbicides,insecticides,fungicides,etc.) or dyes,are totally destroyed.Another example of green chemistry is the total degradation of dyes in water,in particular for the azo-dyes,with 100% selective degradation of -N=N-azo-groups into di-nitrogen.Photocatalysis is also active in the "bio-world" by killing bacteria(E.Coli,streptococcus,etc.) in water without re-growth.Air pollutants can also be destroyed,especially all the VOC’s(volatile organic compounds),providing certain air humidity enabling titania to produce cracking OH* radicals.For chemical engineering reasons,the photocatalyst has to be fixed on a photo-inert support.In these conditions,UV-irradiated titania-based photocatalysis could be applied to the elimination of air pollutants,VOC’s,solvents,odors,chemicals,etc.Air treatment has to be associated with water and solid waste treatment because of odors.This is conducted by covering water treatment ponds or lagunas by rafts on which large sheets of Ahlstrom paper are deposited,supporting titania associated with activated carbon.Eventually,virus AH5N2,a model virus close to H5N1,responsible for the avian flu could be totally inactivated.Photocatalysis is directly connected with all 12 principles of Green Chemistry defined by Anastas(1998) and possesses open perspectives for China.
出处 《Science China Chemistry》 SCIE EI CAS 2010年第9期1831-1843,共13页 中国科学(化学英文版)
关键词 PHOTOCATALYSIS green CHEMISTRY ENVIRONMENTAL CHEMISTRY air POLLUTANTS water POLLUTANTS SOLAR energy China photocatalysis green chemistry environmental chemistry air pollutants water pollutants solar energy China
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  • 1Thu-Hoai Bui,Maithaa Karkmaz,Eric Puzenat,Chantal Guillard,Jean-Marie Herrmann.Solar purification and potabilization of water containing dyes[J]. Research on Chemical Intermediates . 2007 (3)
  • 2J. -M. Herrmann.Heterogeneous photocatalysis: state of the art and present applications In honor of Pr. R.L. Burwell Jr. (1912–2003), Former Head of Ipatieff Laboratories, Northwestern University, Evanston (Ill).[J]. Topics in Catalysis . 2005 (1-4)
  • 3A.A. Adesina.Industrial exploitation of photocatalysis: progress, perspectives and prospects[J]. Catalysis Surveys from Asia . 2004 (4)
  • 4Wei Mu,Jean-Marie Herrmann,Pierre Pichat.Room temperature photocatalytic oxidation of liquid cyclohexane into cyclohexanone over neat and modified TiO2[J]. Catalysis Letters . 1989 (1)
  • 5Augugliaro V,Litter M,Palmisano L,Soria J.The combination of heterogeneous photocatalysis with chemical and physical operations: A tool for improving the photo process performance. J Photochem Photobio C:Photochem Rev . 2007
  • 6Malato S,,Fernández-Ibá-ez P,Maldonado MI,Blanco J,Gernjak W.Decontamination and disinfection of water by solar photocatalysis: Recent overview and trends. Catalysis Today . 2009
  • 7Blake DM.Bibliography of Work on the Photocatalytic Removal of Hazardous Compounds from Water and Air:1994,1995,1997,1999 and 2001. NREL/TP-430-22197 .
  • 8Mehos MS,Turchi CS.Field testing solar photocatalytic detoxification on TCE-contaminated groundwater. Environmental Progress . 1993
  • 9Herrmann JM."Photocatalysis". Kirk-Othmer Encyclopedia . 2006
  • 10Herrmann JM.From catalysis by metals to bifunctional photo catalysis. Topics in Catalysis . 2006

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