Factors Affecting Electrocoagulation Process for Different Water Types: A review

Shahad Fadhil Abed AL-Rubaye, Naseer A. AlHaboubi, A. Al-Allaq
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Abstract

Raw water must meet specific physical, chemical, and biological requirements to be suitable for drinking. There are various techniques available for treating wastewater, and aside from conventional methods that involve chemicals, electrocoagulation is an efficient and advanced approach. Electrocoagulation has proven effective in treating many pollutants, including bacteria, viruses, iron, fluoride, sulfate, boron, hardness, and turbidity. Total suspended solids, organic and inorganic materials, chemical oxygen demand COD, biochemical oxygen demand BOD, and color. It finds extensive application in treating different types of water and wastewater due to its exceptional ability to remove diverse contaminants. Recently, electrocoagulation has garnered significant attention due to its remarkable efficiency in treating various pollutants. This article provides a thorough analysis of contemporary literature that is committed to using electrocoagulation in a variety of water treatment methods, with a focus on the different variables affecting the process performance, such as electrical current, electrode type, electrode configuration, initial pH, electrode distance, NaCl concentration, initial concentration of pollutants, operating temperature and electrolysis time.  
影响不同水质电凝工艺的因素:综述
原水必须满足特定的物理、化学和生物要求,才能适合饮用。处理废水的技术多种多样,除了涉及化学品的传统方法外,电凝法也是一种高效、先进的方法。事实证明,电凝法可以有效处理多种污染物,包括细菌、病毒、铁、氟化物、硫酸盐、硼、硬度和浊度。总悬浮固体、有机物和无机物、化学需氧量 COD、生化需氧量 BOD 和色度。由于电凝具有去除各种污染物的卓越能力,因此被广泛应用于处理不同类型的水和废水。最近,电凝技术因其在处理各种污染物方面的卓越功效而备受关注。本文对当代致力于将电凝用于各种水处理方法的文献进行了深入分析,重点关注影响工艺性能的不同变量,如电流、电极类型、电极配置、初始 pH 值、电极距离、NaCl 浓度、污染物初始浓度、操作温度和电解时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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