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Details

Autor(en) / Beteiligte
Titel
Photocatalytic elimination of indoor air biological and chemical pollution in realistic conditions
Ist Teil von
  • Chemosphere (Oxford), 2012-05, Vol.87 (6), p.625-630
Ort / Verlag
Kidlington: Elsevier Ltd
Erscheinungsjahr
2012
Link zum Volltext
Quelle
Elsevier ScienceDirect Journals Complete
Beschreibungen/Notizen
  • ► Adaptable TiO2-coated transparent polymeric monoliths used as photocatalysts. ► UVA-photocatalysis competes with UVC-photolysis in indoor-air disinfection. ► Simultaneous elimination of bacteria and VOCs, added value for photocatalysis. ► Indoor air characterization and disinfection must be done in realistic conditions. The photocatalytic elimination of microorganisms from indoor air in realistic conditions and the feasibility of simultaneous elimination of chemical contaminants have been studied at laboratory scale. Transparent polymeric monoliths have been coated with sol–gel TiO2 films and used as photocatalyst to treat real indoor air in a laboratory-scale single-step annular photocatalytic reactor. The analytical techniques used to characterize the air quality and analyze the results of the photocatalytic tests were: colony counting, microscopy and PCR with subsequent sequencing for microbial quantification and identification; automated thermal desorption coupled to gas chromatography with mass spectrometry detection for chemical analysis. The first experiments performed proved that photocatalysis based on UVA-irradiated TiO2 for the reduction of the concentration of bacteria in the air could compete with the conventional photolytic treatment with UVC radiation, more expensive and hazardous. Simultaneously to the disinfection, the concentration of volatile organic compounds was greatly reduced, which adds value to this technology for real applications. The fungal colony number was not apparently modified.

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