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Various wastewaters treatment by sono-electrocoagulation process: A comprehensive review of operational parameters and future outlook

机译:Sono-Orightemagulation Process的各种废水处理方法:对操作参数和未来前景进行全面审查

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摘要

Electrochemical processes are a promising alternative to traditional water treatment systems because they have advantages than conventional techniques such as chemical storage, small treatment systems, no alkalinity depletion, remote adjustment, and cost-effectiveness. The most crucial electrochemical method is Electrocoagulation (EC). Through creating cationic species, the EC causes the neutralization of pollutant surface charges and destabilizes suspended, emulsified or dissolved contaminants led to attracting particles of opposite charge and form flocculants. The main drawback of the EC process is a passive film forming on the electrode surface over time. Ultrasonic (US) waves breaking down sediments formed at the electrode surface and generate high amounts of radical species to remove pollutants by creating high-pressure points inside the solution during the cavitation phenomenon. Although EC systems are considered as an exemplary renaissance in water and wastewater treatment, various parameters related to these types of systems in pollutant degradation have not been fully addressed. To present a comprehensive vision of the current state of the art, and progress the treatment efficiency and agitate new studies in these fields, this review aimed to provide an overview of electrocoagulation's application in pollutant degradation, besides the advantages, associated disadvantages and further strategies for improving the performance of this technique. Moreover, this review discussed various parameters affecting the EC/US process, including nanoparticles addition, electrolyte concentration, current intensity, electrode distance, temperature, oxidant addition, pH, pollutant concentration, reaction time, and electrode combination, chloride addition, and ultrasonic frequency. Also, the efficiency of the EC/US process for disinfection, as well as treatment of car-washing, textile, pulp, and paper industry, oily, brewery wastewater, surfactant, humic acid, and heavy metals, are addressed. (C) 2020 Elsevier Ltd. All rights reserved.
机译:电化学方法是传统水处理系统的有希望的替代方案,因为它们具有比常规技术的优点,例如化学储存,小治疗系统,没有碱度耗尽,远程调整和成本效益。最重要的电化学方法是电凝(EC)。通过产生阳离子物种,EC导致污染物表面电荷的中和,并使悬浮,乳化或溶解的污染物导致吸引相反电荷的颗粒并形成絮凝剂。 EC工艺的主要缺点是在电极表面上形成的被动膜。超声(美国)波破坏在电极表面上形成的沉积物,并产生大量的自由基物质以通过在空化现象期间在溶液内产生高压点来除去污染物。尽管EC系统被认为是水和废水处理中的示例性文艺复兴,但与这些类型的污染物降解有关的各种参数尚未得到完全解决。为了展示目前本领域现状的全面愿景,并进展治疗效率和激动这些领域的新研究,该综述旨在概述电凝在污染物下降中的应用,除了优缺点和进一步的策略之外提高这种技术的性能。此外,该综述讨论了影响EC / US工艺的各种参数,包括纳米粒子添加,电解质浓度,电流强度,电极距离,温度,氧化剂添加,pH,污染物浓度,反应时间和电极组合,加入和超声波频率。此外,EC / US消毒方法的效率,以及洗车,纺织,纸浆和造纸工业,油性,啤酒厂废水,表面活性剂,腐殖酸和重金属的处理。 (c)2020 elestvier有限公司保留所有权利。

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