Department of Chemical Engineering, Amirkabir University of Technology, Tehran, Iran.
Department of Chemical Engineering, Amirkabir University of Technology, Tehran, Iran.
Chemosphere. 2023 Oct;338:139565. doi: 10.1016/j.chemosphere.2023.139565. Epub 2023 Jul 21.
The greatest volume of by-products produced in oil and gas recovery operations is referred to as produced water and increasing environmental concerns and strict legislations on discharging it into the environment cause to more attention for focusing on degradation methods for treatment of produced water especially electrochemical technologies. This article provides an overview of electrochemical technologies for treating oily wastewater and produced water, including: electro-coagulation, electro-Fenton, electrochemical oxidation and electrochemical membrane reactor as a single stage and combination of these technologies as multi-stage treatment process. Many researchers have carried out experiments to examine the impact of various factors such as material (i.e, electrode material) and operational conditions (i.e., potential, current density, pH, electrode distance, and other factors) for organic elimination to obtain the high efficiency. Results of each method are reviewed and discussed according to these studies, comprehensively. Furthermore, several challenges need to be overcome and perspectives for future study are proposed for each method.
在石油和天然气回收作业中产生的最大量的副产品称为采出水,日益增加的环境问题和严格的法规限制将其排放到环境中,这导致人们更加关注采出水的处理方法,特别是电化学技术。本文概述了用于处理含油废水和采出水的电化学技术,包括:电凝聚、电芬顿、电化学氧化和电化学膜反应器作为单级处理,以及这些技术的组合作为多级处理工艺。许多研究人员进行了实验,以研究各种因素(例如材料(即电极材料)和操作条件(即电势、电流密度、pH 值、电极距离等因素)对有机消除的影响,以获得高效率。根据这些研究,综述和讨论了每种方法的结果。此外,针对每种方法提出了需要克服的几个挑战和未来研究的展望。