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Enhanced photocatalytic degradation of atrazine by platinized titanium dioxide under 352 nm irradiation

机译:通过352nm辐射下的镀铂二氧化钛增强了亚唑嗪的光催化降解

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Simply coating 1 wt.% of platinum on titanium dioxide (TiO2) surface resulted in simple preparation of platinized TiO2 (Pt-TiO2). This study demonstrated the photodegradation of atrazine (ATZ) using either Pt-TiO2 or TiO2 as a photocatalyst under 352 nm light irradiation. The Pt-TiO2-catalyzed ATZ degradation reached 76% in 3 hours without adding H2O2 solution or aeration, which was more than 10% higher than the TiO2-catalyzed reaction. The decomposition product of Pt-TiO2-catalyzed ATZ degradation was mainly cyanuric acid. Thus, Pt-TiO2 as an effective photocatalyst has three main advantages in the photodegradation of ATZ under 352 nm irradiation. First, the coated Pt can facilitate the generation of appropriate amounts of OH radicals, so it can prevent the formation of over-oxidized TiO2. Second, aeration was not needed. Third, the excited electrons were mainly uni-directionally transferred to the catalyst surface to avoid recombination of electron-hole pairs.
机译:简单地涂布1重量%的二氧化钛上的铂(TiO 2)表面,导致镀锌TiO2的简单制备(Pt-TiO 2)。 该研究表明,在352nm光照射下,使用Pt-TiO 2或TiO 2作为光催化剂的PT-TiO2或TiO 2光降解。 在3小时内,PT-TiO 2催化的ATZ降解在3小时内达到76%,而不加入H 2 O 2溶液或通气,其比TiO 2催化反应高出10%。 Pt-TiO2催化的ATZ降解的分解产物主要是氰尿酸。 因此,Pt-TiO2作为有效的光催化剂在352nm辐射下的ATZ的光降解中具有三个主要优点。 首先,涂覆的Pt可以促进产生适量的OH基团,因此可以防止形成过氧化的TiO 2。 其次,不需要曝气。 第三,激发的电子主要是单向转移到催化剂表面上以避免电子孔对的重组。

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