Mosquera-Romero Suanny, Ntagia Eleftheria, Rousseau Diederik P L, Esteve-Núñez Abraham, Prévoteau Antonin
Center for Microbial Ecology and Technology (CMET), Ghent University, Coupure Links 653, B-9000, Ghent, Belgium.
ESPOL Polytechnic University, Escuela Superior Politécnica del Litoral, ESPOL, Facultad de Ciencias Naturales y Matemáticas, BOX9050, Ecuador.
Environ Sci Ecotechnol. 2023 Mar 21;16:100265. doi: 10.1016/j.ese.2023.100265. eCollection 2023 Oct.
Seasonal or permanent water scarcity in off-grid communities can be alleviated by recycling water in decentralized wastewater treatment systems. Nature-based solutions, such as constructed wetlands (CWs), have become popular solutions for sanitation in remote locations. Although typical CWs can efficiently remove solids and organics to meet water reuse standards, polishing remains necessary for other parameters, such as pathogens, nutrients, and recalcitrant pollutants. Different CW designs and CWs coupled with electrochemical technologies have been proposed to improve treatment efficiency. Electrochemical systems (ECs) have been either implemented within the CW bed (ECin-CW) or as a stage in a sequential treatment (CW + EC). A large body of literature has focused on ECin-CW, and multiple scaled-up systems have recently been successfully implemented, primarily to remove recalcitrant organics. Conversely, only a few reports have explored the opportunity to polish CW effluents in a downstream electrochemical module for the electro-oxidation of micropollutants or electro-disinfection of pathogens to meet more stringent water reuse standards. This paper aims to critically review the opportunities, challenges, and future research directions of the different couplings of CW with EC as a decentralized technology for water treatment and recovery.
离网社区的季节性或永久性水资源短缺问题可通过分散式污水处理系统中的水回收利用来缓解。基于自然的解决方案,如人工湿地(CWs),已成为偏远地区卫生设施的常用解决方案。尽管典型的人工湿地能够有效去除固体和有机物以满足水回用标准,但对于其他参数,如病原体、营养物质和难降解污染物,仍需进行深度处理。人们提出了不同的人工湿地设计以及将人工湿地与电化学技术相结合的方法,以提高处理效率。电化学系统(ECs)已被应用于人工湿地床内(ECin-CW)或作为序批式处理的一个阶段(CW + EC)。大量文献聚焦于ECin-CW,并且最近多个放大规模的系统已成功实施,主要用于去除难降解有机物。相反,仅有少数报告探讨了在下游电化学模块中对人工湿地出水进行深度处理的机会,即通过电氧化微污染物或对病原体进行电消毒,以满足更严格的水回用标准。本文旨在批判性地综述人工湿地与电化学系统不同耦合方式作为分散式水处理和水回收技术的机遇、挑战及未来研究方向。