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Study on the photocatalytic degradation of diesel pollutants in seawater by a sonochemically prepared nano zinc oxide

机译:经说经纳米氧化锌在海水中柴油污染物的光催化降解研究

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Semiconductor ZnO nanocrystal has been synthesized by a sonochemical method and characterized by XRD and SEM techniques. The results indicate that the as-prepared ZnO is of hexagonal wurtzite structure. The photocatalytic degradation of diesel pollutants in seawater is investigated by utilization of ZnO in simulated diesel-polluted seawater exposed to UV irradiation. In the experiment, the influences of ZnO dosage, initial concentration of diesel, pH value, photocatalytic degradation reaction time and the presence of assistance oxidant peroxide, respectively, on the diesel pollutants removal from seawater are investigated. A systematic optimization study is carried out through a orthogonal test on the basis of the results of the single-factor experiments. It reveals that when the experiment is undertaken under the very condition: the ZnO dosage is 1g/L, the initial concentration of diesel lg/L, the pH value 7, the reaction time 3h and the concentration of peroxide 0.16%, the removal rate of diesel pollutants in seawater is expected to reach 84 %.
机译:半导体ZnO纳米晶体已通过SONOCHEMICAL方法合成,并通过XRD和SEM技术进行了特征。结果表明,如制备的ZnO是六边形紫立岩结构。通过利用ZnO在暴露于紫外线照射的模拟柴油污染的海水中,研究了海水中柴油污染物的光催化降解。在实验中,研究了ZnO剂量,初始浓度的柴油,pH值,光催化降解反应时间和辅助氧化剂过氧化物的影响,分别对海水中的柴油污染物进行了辅助氧化剂过氧化物。通过基于单因素实验结果的正交试验进行系统优化研究。揭示在实验下在非常条件下进行时:ZnO剂量为1g / L,柴油Lg / L的初始浓度,pH值7,反应时间3h和过氧化物浓度0.16%,去除率海水中的柴油污染物预计将达到84%。

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