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Photocatalytic Degradation of Toluene, Butyl Acetate and Limonene under UV and Visible Light with Titanium Dioxide-Graphene Oxide as Photocatalyst

机译:二氧化钛-氧化石墨烯为光催化剂在紫外和可见光下光催化降解甲苯,乙酸丁酯和柠檬烯

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Photocatalysis is a promising technique to reduce volatile organic compounds indoors. Titanium dioxide (TiO 2 ) is a frequently-used UV active photocatalyst. Because of the lack of UV light indoors, TiO 2 has to be modified to get its working range shifted into the visible light spectrum. In this study, the photocatalytic degradation of toluene, butyl acetate and limonene was investigated under UV LED light and blue LED light in emission test chambers with catalysts either made of pure TiO 2 or TiO 2 modified with graphene oxide (GO). TiO 2 coated with different GO amounts (0.75%–14%) were investigated to find an optimum ratio for the photocatalytic degradation of VOC in real indoor air concentrations. Most experiments were performed at a relative humidity of 0% in 20 L emission test chambers. Experiments at 40% relative humidity were done in a 1 m3 emission test chamber to determine potential byproducts. Degradation under UV LED light could be achieved for all three compounds with almost all tested catalyst samples up to more than 95%. Limonene had the highest degradation of the three selected volatile organic compounds under blue LED light with all investigated catalyst samples.
机译:光催化是减少室内挥发性有机化合物的一种有前途的技术。二氧化钛(TiO 2)是一种常用的UV活性光催化剂。由于室内缺乏紫外线,因此必须对TiO 2进行改性,以使其工作范围转变为可见光谱。在这项研究中,使用纯TiO 2或经氧化石墨烯(GO)改性的TiO 2制成的催化剂,在发射试验室中在UV LED光和蓝色LED光下研究了甲苯,乙酸丁酯和柠檬烯的光催化降解。研究了用不同GO量(0.75%–14%)涂覆的TiO 2,以找到在室内实际空气浓度下VOC光催化降解的最佳比例。大多数实验是在20 L排放测试箱中的相对湿度为0%的条件下进行的。在1 m3排放测试室中以40%相对湿度进行实验,以确定潜在的副产物。所有三种化合物在UV LED光下均可降解,几乎所有测试的催化剂样品均超过95%。在所有研究的催化剂样品中,柠檬烯在蓝色LED光下具有三种选定的挥发性有机化合物的最高降解率。

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