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Wastewater Treatment by Combination of Advanced Oxidation Processes and Conventional Biological Systems

机译:高级氧化工艺与常规生物系统相结合的废水处理

摘要

One of the most challenging issues of the last decades is the presence of recalcitrant compounds in the effluents of wastewater treatment plants, due to their toxicity on both human health and environment. Although conventional biological processes are usually efficient for the degradation of pollutants occurring in wastewaters, most of these compounds are not effectively removed.udIn this context, Advanced Oxidation Processes (AOPs), which are oxidation methods relying on the action of highly reactive species such as hydroxyl radicals, are raising great interest for the removal of those organic pollutants not treatable by conventional techniques due to their high chemical stability and/or low biodegradability. As several studies pointed out the effectiveness of AOPs in the degradation of a wide spectrum of both organic and inorganic pollutants, they are considered a highly competitive wastewater treatment technology. However, in order to reduce operating costs associated to the application of AOPs, their proper combination with conventional biological processes should be considered.udThis work aims to discuss the most common AOPs used as pretreatment of wastewater for its biological processing, in order to highlight the enhancement of wastewater biological treatability supplied by different advanced oxidation methods. To this end, main standard tests and parameters for wastewater biodegradability assessment are also pointed out, thus providing an overview of the most reliable ones.
机译:过去几十年来最具挑战性的问题之一是废水处理厂的废水中存在顽固性化合物,因为它们对人类健康和环境均具有毒性。尽管常规的生物过程通常对于降解废水中的污染物非常有效,但是大多数这些化合物都无法有效去除。 ud在这种情况下,高级氧化过程(AOPs)是依靠高反应性物种的作用而氧化的方法,例如作为羟基自由基,由于其化学稳定性高和/或生物降解性低,对于去除那些用常规技术无法处理的有机污染物引起了极大的兴趣。正如几项研究指出的那样,AOP在降解多种有机和无机污染物方面的有效性,被认为是一种极具竞争力的废水处理技术。但是,为了降低与应用AOP相关的运营成本,应考虑将其与常规生物过程进行适当的组合。 ud本工作旨在讨论最常见的AOP,将其用作生物处理废水的预处理,以便强调通过不同的高级氧化方法提高废水的生物可处理性。为此,还指出了废水生物降解性评估的主要标准测试和参数,从而概述了最可靠的测试和参数。

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