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Zinc oxide tetrapods as efficient photocatalysts for organic pollutant degradation

机译:四脚形氧化锌可有效降解有机污染物

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Bisphenol A (BPA) and other organic pollutants from industrial wastewater have drawn increasing concern in the past decades regarding their environmental and biological risks, and hence developing strategies of effective degradation of BPA and other organic pollutants is imperative. Metal oxide nanostructures, in particular titanium oxide (TiO_2) and zinc oxide (ZnO), have been demonstrated to exhibit efficient photodegradation of various common organic dyes. ZnO tetrapods are of special interest due to their low density of native defects which consequently lead to lower recombination losses and higher photocatalytic efficiency. Tetrapods can be obtained by relatively simple and low-cost vapor phase deposition in large quantity; the micron-scale size would also be advantageous for catalyst recovery. In this study, the photodegradation of BPA with ZnO tetrapods and TiO_2 nanostructures under UV illumination were compared. The concentration of BPA dissolved in DI water was analyzed by high-performance liquid chromatography (HPLC) at specified time intervals. It was observed that the photocatalytic efficiency of ZnO tetrapods eventually surpassed Degussa P25 in free-standing form, and more than 80% of BPA was degraded after 60 min. Photodegradation of other organic dye pollutants by tetrapods and P25 were also examined. The superior photocatalytic efficiency of ZnO tetrapods for degradation of BPA and other organic dye pollutants and its correlation with the material properties were discussed.
机译:在过去的几十年中,工业废水中的双酚A(BPA)和其他有机污染物引起了对环境和生物风险的日益关注,因此,开发有效降解BPA和其他有机污染物的策略势在必行。已证明金属氧化物纳米结构,特别是氧化钛(TiO_2)和氧化锌(ZnO)具有对各种常见有机染料的有效光降解作用。 ZnO四脚架因其天然缺陷的密度低而特别受关注,从而导致较低的重组损失和较高的光催化效率。四脚架可以通过相对简单且低成本的气相沉积来获得;微米级尺寸对于催化剂回收也将是有利的。在这项研究中,比较了ZnO四足动物和TiO_2纳米结构在紫外线照射下对BPA的光降解作用。通过高效液相色谱(HPLC)在指定的时间间隔分析溶解在去离子水中的BPA的浓度。观察到,ZnO四脚架的光催化效率最终以独立形式超过Degussa P25,并且60分钟后降解了超过80%的BPA。还检查了四足动物和P25对其他有机染料污染物的光降解作用。讨论了ZnO四脚架对BPA和其他有机染料污染物降解的优异光催化效率及其与材料性能的关系。

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