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Photocatalytic elimination of indoor air biological and chemical pollution in realistic conditions

机译:在实际条件下光催化消除室内空气中的生物和化学污染

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摘要

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 TiO 2 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 TiO 2 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. © 2012 Elsevier Ltd.
机译:在实验室规模下,已经研究了在现实条件下从室内空气中光催化消除微生物以及同时消除化学污染物的可行性。透明的聚合物整料已涂有溶胶-凝胶TiO 2薄膜,并用作光催化剂以在实验室规模的单步环形光催化反应器中处理真实的室内空气。用于表征空气质量并分析光催化测试结果的分析技术包括:菌落计数,显微镜检查和PCR,以及随后的测序,用于微生物定量和鉴定;自动热脱附结合气相色谱和质谱检测进行化学分析。进行的第一个实验证明,基于UVA辐照的TiO 2的光催化降低空气中细菌的浓度可以与传统的UVC辐射光解处理竞争,价格更高且危害更大。在消毒的同时,挥发性有机化合物的浓度大大降低,这为该技术在实际应用中增加了价值。真菌菌落数没有明显改变。 ©2012爱思唯尔有限公司。

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