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Recent Applications of Electrocoagulation in Treatment of Water and Wastewater—A Review

机译:电凝在水和废水处理中的最新应用-综述

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During the last two decades, and particularly during the last few years, the environmental sector has shown a largely growing interest in the treatment of different types of water and wastewater by electrocoagulation (EC). The aim of this work was to review studies, conducted mainly during 2008-2011, on the wide and versatile range of feasible EC applications employed in the purification of different types of water and wastewater. The EC applications discussed here were divided into 7 following categories: tannery, textile and colored wastewater; pulp and paper industry wastewater; oily wastewater; food industry wastewater; other types of industrial wastewater; surface water as well as model water and wastewater containing heavy metals, nutrients, cyanide and other elements and ions. In addition, this paper presents an overview of the optimum process conditions (treatment times, current densities, and initial pH) and removal efficiencies (mostly high) achieved for the EC applications discussed. In the vast majority of the studies discussed in this review, the aforementioned values were found to be in the range of 5-60 min (typically less than 30 min), 10-150 A/m2 and near neutral pH, respectively. Both operating costs and electrical energy consumption values were found to vary greatly depending on the type of solution being treated, being between 0.004 -6.74 €/m3 and 0.002-58.0 kWh/m3, but in general they were rather low (typically around 0.1-1.0 €/m3 and 0.4-4.0 kWh/m3).
机译:在过去的二十年中,尤其是在过去的几年中,环境部门对通过电凝(EC)处理不同类型的水和废水表现出极大的兴趣。这项工作的目的是回顾主要在2008-2011年间进行的有关净化各种类型的水和废水的可行EC应用的广泛研究。此处讨论的EC应用程序分为以下7类:制革厂,纺织厂和有色废水;制浆造纸工业废水;含油废水;食品工业废水;其他类型的工业废水;地表水以及模型水和废水中所含的重金属,养分,氰化物以及其他元素和离子。此外,本文概述了为所讨论的EC应用所达到的最佳工艺条件(处理时间,电流密度和初始pH)和去除效率(大多很高)。在这篇综述中讨论的绝大多数研究中,上述值分别在5-60分钟(通常少于30分钟),10-150 A / m2和接近中性pH的范围内。发现运行成本和电能消耗值根据所处理溶液的类型差异很大,介于0.004 -6.74€/ m3和0.002-58.0 kWh / m3之间,但总的来说很低(通常约为0.1-0.34€/ m3)。 1.0欧元/立方米和0.4-4.0千瓦时/立方米)。

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