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首页> 外文期刊>Chemical engineering journal >A review on efficiency and cost effectiveness of electro- and bio-electro-Fenton processes: Application to the treatment of pharmaceutical pollutants in water
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A review on efficiency and cost effectiveness of electro- and bio-electro-Fenton processes: Application to the treatment of pharmaceutical pollutants in water

机译:电气和生物电气芬顿工艺效率和成本效益综述:应用于水中药物污染物的应用

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摘要

Nowadays, the treatment of wastewater is a worldwide concern due to the large impact on the environment and human health. Among different types of pollutant, pharmaceuticals are increasingly of emerging concern, as they are generally resistant to the conventional treatment methods and harmful to the environment. Advanced oxidation processes and especially electrochemical advanced oxidation processes (EAOPs) constitute an efficient way to eliminate this kind of pollutants. Among them, the electro-Fenton (EF) process is an environmentally friendly EAOP particularly efficient to remove persistent/toxic pollutant from the water. The main drawback of this method, however, is the relatively high cost due to the energy consumption when a complete mineralization of treated solutions is required. To reduce electrical energy consumption, the combination with a biological treatment was suggested as shown by several successful studies. This review is first addressing ways to improve the degradation efficiency and to reduce the cost of the EF process, with a focus on new types of reactors: especially geometrical modifications, change of the out streaming or the O-2 supply. The continuous process is then taken into consideration in order to enable scaling-up. Secondly, the combination of the EF process with a biological treatment for efficient removal of pharmaceuticals is overviewed with focus on the cost, the treatment efficiency and the order (pre- or post-) of treatment. The efficiency of such a system is clearly demonstrated.
机译:如今,由于对环境和人类健康的巨大影响,废水的治疗是全世界的关注。在不同类型的污染物中,药物越来越多地关注,因为它们通常耐受常规治疗方法并对环境有害。先进的氧化方法,尤其是电化学先进的氧化过程(EAOP)构成消除这种污染物的有效方法。其中,电 - 芬顿(EF)工艺是一种环保的助剂,特别有效地从水中去除持久/毒性污染物。然而,这种方法的主要缺点是由于需要处理解决方案的完全矿化时,由于能量消耗的成本相对较高。为了降低电能消耗,提出了与生物处理的组合,如几项成功研究所示。本综述是提高劣化效率和降低EF过程的成本的解决方法,专注于新型反应堆:尤其是几何修改,改变外流或O-2供应。然后考虑连续过程以便实现缩放。其次,概述了EF过程的组合,以便有效地清除药物的药物,重点是成本,治疗效率和治疗的顺序(或后期或后)。清楚地证明了这种系统的效率。

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