Efficient removal of micropollutants from low-conductance surface water using an electrochemical Janus ceramic membrane filtration system

化学 化学工程 废水 过滤(数学) 陶瓷膜 阳极 水处理 电化学 渗透 电极 材料科学 无机化学 环境工程 生物化学 统计 数学 物理化学 工程类
作者
Zhouyan Li,Xuesong Li,Yang Li,Jiayi Li,Qiuying Yi,Fei Gao,Zhiwei Wang
出处
期刊:Water Research [Elsevier BV]
卷期号:220: 118627-118627 被引量:38
标识
DOI:10.1016/j.watres.2022.118627
摘要

Electrochemical membrane filtration (EMF) technology is effective to remove the micropollutant in the wastewater but its efficacy is drastically compromised in treating the surface water having a typically low conductivity. In this work, a Janus Fe-Pt electrochemical ceramic membrane (ECM) was fabricated by depositing a thin Fe layer on the side of a ceramic membrane facing feed (cathode) and Pt layer on the other side facing permeate (anode). The low Fe-Pt electrode distance (∼1 mm) ensured a decent conductance of the EMF system even in the low-salinity surface water and thereby maintained the removal efficiency of the micropollutant. It was identified that hydroxyl radicals (•OH) generated via anodic water oxidation and cathodic heterogenous Fenton process on bilateral sides of ECM were the dominant reactive oxygen species. The EMF system not only achieved 74% removal of atrazine (ATZ) from the low-conductance synthetic surface water with a low energy consumption (3.6 Wh per gATZ or 7.2 Wh m - 3), but also realized a stable removal of ATZ from real surface water over a continuous filtration experiment of 168 h. The theoretical computations and experimental analysis identified the degradation pathway, i.e., the dechlorination and dealkylation of ATZ in the EMF system. This study highlights the great potential of the Janus ECM in removing micropollutants from low-conductance surface water and wastewater.
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