Laboratoire Géomatériaux et Environnement, Université Paris-Est, UPEMLV 77454, Marne-la-Vallée, EA 4508, France.
Environ Sci Pollut Res Int. 2014;21(14):8493-524. doi: 10.1007/s11356-014-2770-6. Epub 2014 Mar 29.
As pollution becomes one of the biggest environmental challenges of the twenty-first century, pollution of water threatens the very existence of humanity, making immediate action a priority. The most persistent and hazardous pollutants come from industrial and agricultural activities; therefore, effective treatment of this wastewater prior to discharge into the natural environment is the solution. Advanced oxidation processes (AOPs) have caused increased interest due to their ability to degrade hazardous substances in contrast to other methods, which mainly only transfer pollution from wastewater to sludge, a membrane filter, or an adsorbent. Among a great variety of different AOPs, a group of electrochemical advanced oxidation processes (EAOPs), including electro-Fenton, is emerging as an environmental-friendly and effective treatment process for the destruction of persistent hazardous contaminants. The only concern that slows down a large-scale implementation is energy consumption and related investment and operational costs. A combination of EAOPs with biological treatment is an interesting solution. In such a synergetic way, removal efficiency is maximized, while minimizing operational costs. The goal of this review is to present cutting-edge research for treatment of three common and problematic pollutants and effluents: dyes and textile wastewater, olive processing wastewater, and pharmaceuticals and hospital wastewater. Each of these types is regarded in terms of recent scientific research on individual electrochemical, individual biological and a combined synergetic treatment.
随着污染成为 21 世纪最大的环境挑战之一,水污染威胁着人类的生存,因此立即采取行动是当务之急。最持久和危险的污染物来自工业和农业活动;因此,在将这种废水排放到自然环境之前,对其进行有效处理是解决问题的方法。与其他主要只能将污染从废水转移到污泥、膜过滤器或吸附剂的方法相比,高级氧化工艺(AOP)因其能够降解有害物质而引起了人们的极大兴趣。在各种各样的不同 AOP 中,一组电化学高级氧化工艺(EAOP),包括电芬顿法,作为一种环保且有效的处理工艺,用于破坏持久性危险污染物,正在崭露头角。唯一减缓大规模实施的问题是能源消耗以及相关的投资和运营成本。将 EAOP 与生物处理相结合是一种有趣的解决方案。通过这种协同方式,可以最大限度地提高去除效率,同时最小化运营成本。本文的目的是介绍处理三种常见且有问题的污染物和废水的最新研究:染料和纺织废水、橄榄油加工废水以及药品和医院废水。对于每一种废水,都根据最近关于单独电化学、单独生物以及协同处理的研究进行了讨论。