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Detoxification of water and wastewater by advanced oxidation processes

机译:通过高级氧化工艺对水和废水进行排毒

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Nowadays there is a continuously increasing attention for the treatment of recalcitrant compounds present in water and wastewater due to their toxicity on both human health and the environment. Advanced oxidation processes (AOPs) are found to be effective for the degradation of recalcitrant compounds by increasing biodegradability and reducing toxicity. The present review focuses on the detoxification aspects of AOPs with special emphasis on arsenic toxicity. Different bioassays employing bacteria, invertebrates, algae, plants, and fish have been critically reviewed in this article as a valuable tool for assessing the toxicity as well as biodegradability of the industrial wastewater post AOP treatment. Various toxicity tests employed during AOP treatment of wastewater with high toxicity revealed that AOPs are effective for reducing their toxicity significantly. These processes are also effective to reduce arsenic toxicity by oxidizing arsenite to arsenate. By-products formed during AOP treatment of wastewater are also found more toxic than its parent compound. Thus, toxicity tests are essential for AOP treated wastewater before its disposal. (C) 2019 Elsevier B.V. All rights reserved.
机译:如今,由于水和废水对人体健康和环境均具有毒性,因此对水和废水中难降解化合物的处理越来越受到关注。发现先进的氧化过程(AOP)通过增加生物降解能力和降低毒性对降解顽固性化合物有效。目前的审查集中在AOPs的解毒方面,特别是砷的毒性。本文已对使用细菌,无脊椎动物,藻类,植物和鱼类的各种生物测定方法进行了严格审查,作为评估AOP处理后工业废水的毒性和生物降解性的有价值的工具。 AOP处理高毒性废水过程中采用的各种毒性试验表明,AOP可有效降低其毒性。这些方法还有效地通过将亚砷酸氧化成砷来降低砷毒性。还发现在AOP处理废水过程中形成的副产物比其母体化合物毒性更大。因此,毒性测试对于AOP处理的废水在处理之前是必不可少的。 (C)2019 Elsevier B.V.保留所有权利。

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