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首页> 外文期刊>Environmental Science and Pollution Research >Removal of pharmaceutically active compounds from synthetic and real aqueous mixtures and simultaneous disinfection by supported TiO2/UV-A, H2O2/UV-A, and TiO2/H2O2/UV-A processes
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Removal of pharmaceutically active compounds from synthetic and real aqueous mixtures and simultaneous disinfection by supported TiO2/UV-A, H2O2/UV-A, and TiO2/H2O2/UV-A processes

机译:通过支持的TiO2 / UV-A,H 2 O 2 / UV-A和TiO 2 / H 2 O 2 / UV-A方法从合成和实际水性混合物中除去药物上活性化合物并同时消毒

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摘要

Pharmaceutically active compounds are carried into aquatic bodies along with domestic sewage, industrial and agricultural wastewater discharges. Psychotropic drugs, which can be toxic to the biota, have been detected in natural waters in different parts of the world. Conventional water treatments, such as activated sludge, do not properly remove these recalcitrant substances, so the development of processes able to eliminate these compounds becomes very important. Advanced oxidation processes are considered clean technologies, capable of achieving high rates of organic compounds degradation, and can be an efficient alternative to conventional treatments. In this study, the degradation of alprazolam, clonazepam, diazepam, lorazepam, and carbamazepine was evaluated through TiO2/UV-A, H2O2/UV-A, and TiO2/H2O2/UV-A, using sunlight and artificial irradiation. While using TiO2 in suspension, best results were found at [TiO2] = 0.1 g L-1. H2O2/UV-A displayed better results under acidic conditions, achieving from 60 to 80% of removal. When WWTP was used, degradation decreased around 50% for both processes, TiO2/UV-A and H2O2/UV-A, indicating a strong matrix effect. The combination of both processes was shown to be an adequate approach, since removal increased up to 90%. H2O2/UV-A was used for disinfecting the aqueous matrices, while mineralization was obtained by TiO2-photocatalysis.
机译:药物活性化合物与国内污水,工业和农业废水排放一起进行水生体。在世界不同地区的天然水域中检测到对生物群有毒的精神药物。常规的水处理,例如活性污泥,不适当地除去这些醋钙质物质,因此能够消除这些化合物的过程的开发变得非常重要。先进的氧化方法被认为是清洁技术,能够实现高速率的有机化合物降解,并且可以是常规治疗的有效替代品。在该研究中,通过TiO2 / UV-A,H 2 O 2 / UV-A和TiO2 / H2O2 / UV-A评估Alprazolam,Clonazepam,Diazepam,洛拉西泮和群毒素的降解。在使用TiO2在悬浮中时,在[TiO2] = 0.1g L-1时发现了最佳结果。 H2O2 / UV-A在酸性条件下显示出更好的结果,从60%到80%的去除率下实现。当使用WWTP时,过程,TiO2 / UV-A和H 2 O 2 / UV-A的降解减少了约50%,表明强矩阵效应。两种过程的组合被证明是一种足够的方法,因为去除增加了90%。 H 2 O 2 / UV-A用于消毒水性基质,而通过TiO 2光催化获得矿化。

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