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二氧化钛光降解机理研究中的不同方法:气相和二氧化钛吸附相。

Different methods in TiO2 photodegradation mechanism studies: gaseous and TiO2-adsorbed phases.

作者信息

Deveau Pierre-Alexandre, Arsac Fabrice, Thivel Pierre-Xavier, Ferronato Corinne, Delpech Françoise, Chovelon Jean-Marc, Kaluzny Pascal, Monnet Christine

机构信息

Groupe de Recherche sur l'Environnement et la Chimie Atmosphérique, Université Joseph Fourier Grenoble I, France.

出版信息

J Hazard Mater. 2007 Jun 18;144(3):692-7. doi: 10.1016/j.jhazmat.2007.01.097. Epub 2007 Jan 30.

Abstract

The development of photocatalysis processes offers a significant number of perspectives especially in gaseous phase depollution. It is proved that the photo-oxidizing properties of photocatalyst (TiO(2)) activated by UV plays an important role in the degradation of volatile organic compounds (VOC). Heterogeneous photocatalysis is based on the absorption of UV radiations by TiO(2). This phenomenon leads to the degradation and the oxidation of the compounds, according to a mechanism that associates the pollutant's adsorption on the photocatalyst and radical degradation reactions. The main objective of the study is the understanding of the TiO(2)-photocatalysis phenomenon including gaseous and adsorbed phase mechanisms. Results obtained with three different apparatus are compared; gaseous phases are analysed and mechanisms at the gaseous phase/photocatalyst interface are identified. This study leads to improve understanding of various mechanisms during pollutant photodegradation: adsorption of pollutants on TiO(2) first takes place, then desorption and/or photodegradation, and finally, desorption of degradation products on TiO(2). The association of analytical methods and different processes makes the determination of all parameters that affect the photocatalytic process possible. Mastering these parameters is fundamental for the design and construction of industrial size reactors that aim to purify the atmosphere.

摘要

光催化过程的发展提供了大量的前景,尤其是在气相污染治理方面。事实证明,由紫外线激活的光催化剂(TiO₂)的光氧化特性在挥发性有机化合物(VOC)的降解中起着重要作用。多相光催化基于TiO₂对紫外线辐射的吸收。根据一种将污染物在光催化剂上的吸附与自由基降解反应相结合的机制,这种现象会导致化合物的降解和氧化。该研究的主要目的是了解TiO₂光催化现象,包括气相和吸附相机制。比较了用三种不同仪器获得的结果;分析了气相,并确定了气相/光催化剂界面处的机制。这项研究有助于增进对污染物光降解过程中各种机制的理解:污染物首先在TiO₂上发生吸附,然后是解吸和/或光降解,最后是降解产物从TiO₂上解吸。分析方法与不同过程的结合使得确定所有影响光催化过程的参数成为可能。掌握这些参数对于旨在净化空气的工业规模反应器的设计和建造至关重要。

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