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Combination of Advanced Oxidation Processes and biological treatments for wastewater decontamination—A review

机译:先进的氧化工艺与生物处理相结合的废水净化技术—综述

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摘要

Nowadays there is a continuously increasing worldwide concern for development of alternative water reuse technologies, mainly focused on agriculture and industry. In this context, Advanced Oxidation Processes (AOPs) are considered a highly competitive water treatment technology for the removal of those organic pollutants not treatable by conventional techniques due to their high chemical stability and/or low biodegradability. Although chemical oxidation for complete mineralization is usually expensive, its combination with a biological treatment is widely reported to reduce operating costs. This paper reviews recent research combining AOPs (as a pre-treatment or post-treatment stage) and bioremediation technologies for the decontamination of a wide range of synthetic and real industrial wastewater. Special emphasis is also placed on recent studies and large-scale combination schemes developed in Mediterranean countries for non-biodegradable wastewater treatment and reuse. The main conclusions arrived at from the overall assessment of the literature are that more work needs to be done on degradation kinetics and reactor modeling of the combined process, and also dynamics of the initial attack on primary contaminants and intermediate species generation. Furthermore, better economic models must be developed to estimate how the cost of this combined process varies with specific industrial wastewater characteristics, the overall decontamination efficiency and the relative cost of the AOP versus biological treatment.
机译:如今,全球范围内对替代性水回用技术发展的关注日益增加,这种技术主要集中在农业和工业上。在这种情况下,高级氧化工艺(AOP)被认为是一种具有高度竞争力的水处理技术,用于去除由于其高化学稳定性和/或低生物降解性而无法通过常规技术处理的有机污染物。尽管用于完全矿化的化学氧化通常很昂贵,但广泛报道将其与生物处理相结合可降低运营成本。本文回顾了结合AOP(作为预处理或后处理阶段)和生物修复技术对广泛范围的合成和实际工业废水进行净化处理的最新研究。还特别强调了在地中海国家针对不可生物降解的废水处理和回用开发的最新研究和大规模联合计划。从文献的总体评估中得​​出的主要结论是,需要对组合过程的降解动力学和反应器建模以及对主要污染物和中间物种生成的初始攻击的动力学进行更多的工作。此外,必须开发更好的经济模型来估算该组合过程的成本如何随特定的工业废水特性,总净化效率以及AOP与生物处理的相对成本而变化。

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