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Photocatalytic generation of sulphate and hydroxyl radicals using zinc oxide under low-power UV to oxidise phenolic contaminants in wastewater

机译:在低功率紫外线下使用氧化锌光催化生成硫酸根和羟基自由基以氧化废水中的酚类污染物

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Photochemical and photocatalytic reaction and the combination of both for the oxidation of phenol in aqueous solution were investigated. Photochemical reaction was carried out using three different types of oxidants in the presence of UV radiation while photocatalytic reaction was carried out on zinc oxide under UV radiation. Three different oxidants viz peroxymonosulphate (PMS), peroxydisulphate (PDS) and hydrogen peroxide (H2O2) were employed to generate active sulphate/hydroxyl radicals for oxidation. The synergetic effect of combination of UV/oxidant/ZnO was investigated for the three different oxidant systems. It was found that homogeneous photochemical oxidation of phenol using PMS, PDS or H2O2 exhibited much better performance than heterogeneous photocatalytic oxidation using UV/ZnO. The combination of photochemical and photocatalytic oxidation by combining UV/oxidant with ZnO at low UV radiation showed different degradation trends depending on the oxidant. Scattering of UV radiation in UV/PDS/ZnO and UV/H2O2/ZnO systems showed a slower rate of phenol degradation as compared to the photochemical oxidation under UV/PDS and UV/H2O2 systems. However, UV/PMS/ZnO showed higher rate of phenol oxidation as compared to the photochemical oxidation under UV/PMS, which was mainly attributed to the self-chemical reaction between ZnO and PMS. The phenol degradation in UV/PMS/ZnO followed the first-order kinetics while the phenol degradation resulted from the self-chemical reaction of ZnO/PMS followed zero-order kinetics.
机译:研究了光化学和光催化反应以及两者的结合对水溶液中苯酚的氧化作用。在紫外线辐射下,使用三种不同类型的氧化剂进行光化学反应,而在紫外线辐射下,对氧化锌进行光催化反应。三种不同的氧化剂,即过氧一硫酸盐(PMS),过氧二硫酸盐(PDS)和过氧化氢(H2O2)被用于生成活性硫酸盐/羟基自由基进行氧化。研究了UV /氧化剂/ ZnO组合对三种不同氧化剂体系的协同作用。发现使用PMS,PDS或H2O2对苯酚进行均相光化学氧化比使用UV / ZnO进行非均相光催化氧化具有更好的性能。通过在低紫外线辐射下将紫外线/氧化剂与ZnO组合进行光化学和光催化氧化的组合显示出不同的降解趋势,具体取决于氧化剂。与在UV / PDS和UV / H2O2系统下进行光化学氧化相比,UV / PDS / ZnO和UV / H2O2 / ZnO系统中UV辐射的散射显示出较慢的苯酚降解速率。然而,与UV / PMS下的光化学氧化相比,UV / PMS / ZnO显示出更高的苯酚氧化速率,这主要归因于ZnO与PMS之间的自化学反应。 UV / PMS / ZnO中苯酚的降解遵循一级动力学,而ZnO / PMS的自化学反应导致苯酚降解遵循零级动力学。

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