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Classification of the degradability of 30 Pharmaceuticals in water with Ozone, UV and H_2O_2

机译:臭氧,紫外线和H_2O_2对30种药物在水中的降解性的分类

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The experiments were conducted to assess the degradability of 30 PPCPs that were selected on the basis of consumption and environmental relevance by O_3 process, UV process and AOPs consisting of UV/ H_2O_2. O_3/UV and O_3/H_2O_2. A batch reactor with volume of 22L of water including the PPCPs was used. For UV process, combination of UV and H_2O_2 or O_3 that can generate OH radicals was capable of degrading the PPCPs faster than UV radiation alone. On the other hand, O_3 process and O_3-based/UV-based AOPs could remove a variety of the PPCPs effectively, while some PPCPs such as 2-QCA, DEET and cyclophosphamide showed a relatively low degradability compared to the other PPCPs. However, further evaluate on formation of intermediate products resulted from the degradation of the parent PPCPs will be needed because DOC concentration was not decreased with dereasing the concentrations of the PPCPs.
机译:进行实验以评估30种PPCP的可降解性,这些PPCP是通过消耗量和与环境有关的O_3工艺,UV工艺和由UV / H_2O_2组成的AOP来选择的。 O_3 / UV和O_3 / H_2O_2。使用具有22L水的分批反应器,其中包括PPCP。对于UV工艺,UV和H_2O_2或O_3的组合可以产生OH自由基,其降解PPCP的速度比单独的UV辐射快。另一方面,O_3工艺和基于O_3 /基于UV的AOP可以有效去除多种PPCP,而某些PPCP(如2-QCA,DEET和环磷酰胺)与其他PPCP相比,降解性相对较低。但是,由于母体PPCP的降解不会导致DOC浓度随降低PPCPs的浓度而降低,因此需要进一步评估中间产物的形成。

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