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On the design of electrochemical reactors for the treatment of polluted water

机译:关于处理污水的电化学反应器的设计

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Over the last twenty years considerable attention has been focused on the elimination of pollutants through reactions activated by non-traditional methods. Electrochemical methods such as direct oxidation, indirect oxidation and electroFenton have been demonstrated to be effective on a number of organic pollutants dissolved in water. In addition, direct reduction and metal deposition have been proved to be viable techniques for the elimination of nitrates and heavy metals from aqueous solutions. In this area, the literature mainly focus on fundamental research: considerable results have been achieved in terms of detailed scientific knowledge of the reaction mechanisms, but very few data are available on the behaviour of laboratory-scale reactors; furthermore, the energetic balance of the overall process has rarely been analysed. Owing to this fact, a proposal for a suitable reactor design necessitates an accurate discussion. In this paper we summarise the results reported in the literature and then we use that data to propose a new methodology for the evaluation of the feasibility of industrial-scale reactors.
机译:在过去的二十年中,相当多的注意力集中在通过非传统方法激活的反应消除污染物上。电化学方法如直接氧化,间接氧化和electroFenton已被证明对溶解于水中的多种有机污染物有效。另外,已经证明直接还原和金属沉积是从水溶液中消除硝酸盐和重金属的可行技术。在这一领域,文献主要集中在基础研究上:就反应机理的详细科学知识而言,已经取得了可观的结果,但是关于实验室规模反应器性能的数据很少。此外,很少分析整个过程的能量平衡。由于这个事实,关于合适的反应堆设计的建议需要进行准确的讨论。在本文中,我们总结了文献中报道的结果,然后我们使用该数据提出了一种评估工业规模反应堆可行性的新方法。

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