首页> 外文期刊>Journal of Chemical Engineering & Process Technology >The Effects of Photocatalyst and Solution Co-Contaminants onPhotocatalytic Oxidation of 1,3- Dinitrobenzene in Aqueous SemiconductorOxide Suspensions
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The Effects of Photocatalyst and Solution Co-Contaminants onPhotocatalytic Oxidation of 1,3- Dinitrobenzene in Aqueous SemiconductorOxide Suspensions

机译:光催化剂和溶液中的污染物对半导体氧化物悬浮液中1,3-二硝基苯的光催化氧化的影响

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Heterogeneous photocatalysis of 1,3-dinitrobenzene (DNB) using simulated solar irradiation in the presence of semiconductor oxides was studied. Comparison of TiO2 and ZnO showed that the former was a more efficient photocatalyst for the degradation of DNB. The addition of potential environmental co-contaminants such as acetic acid, fulvic acid and seawater salts to the DNB solutions all inhibited the DNB degradation rate. The addition of hydroxyl radical-generating compounds, including H2O2 and NaNO3, to the DNB solutions both slightly reduced the DNB degradation rate, indicating that hydroxyl radical generation is not a rate limiting step in the overall reaction process. The use of 5 volume % acetone cosolvent slowed the degradation rate, however for 15 volume % acetone despite the slower relative rate of destruction, the higher concentrations of DNB provided higher mass destruction rates.
机译:研究了在存在半导体氧化物的情况下,模拟太阳辐射对1,3-二硝基苯(DNB)的非均相光催化作用。 TiO2和ZnO的比较表明,前者是降解DNB的更有效的光催化剂。在DNB溶液中添加潜在的环境污染物,例如乙酸,黄腐酸和海水盐,都会抑制DNB的降解速度。在DNB溶液中添加生成氢自由基的化合物(包括H2O2和NaNO3)均会稍微降低DNB的降解速率,这表明羟基自由基的生成不是整个反应过程中的限速步骤。使用5体积%的丙酮助溶剂减慢了降解速率,但是对于15体积%的丙酮,尽管相对破坏速率较慢,但较高的DNB浓度提供了更高的质量破坏速率。

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