Department of Environmental Engineering, Mersin University, 33343 Yenisehir, Mersin, Turkey E-mail:
Institute of Marine Science, Middle East Technical University, 33731 Erdemli, Mersin, Turkey.
Water Sci Technol. 2021 Oct;84(7):1648-1662. doi: 10.2166/wst.2021.356.
Wastewater treatment plants (WWTPs) are one of the major vectors of microplastics (MPs) pollution for the recipient water bodies. Therefore, the recovery of MPs from WWTPs is extremely important for decreasing their accumulation and impact in aquatic systems. In this present study, the electrocoagulation-electroflotation (EC/EF) and membrane filtration processes were investigated in removing MPs from wastewaters. The effectiveness of different electrode combinations (Fe-Al and Al-Fe), current density (10-20 A/m), pH (4.0-10.0) and operating times (0-120 min) on the removal of two different polymer particles in water were investigated to obtain maximum treatment efficiency. The effect of pressure (1-3 bar) on membrane filtration removal efficiency was also investigated. The maximum removal efficiencies were obtained as 100% for both polymer types with electrode combination of Al-Fe, initial pH of 7, current density of 20 A/m and reaction time of 10 min. The membrane filtration method also displayed a 100% removal efficiency. In addition, these laboratory-scale results were compared with the one-year average data of a plant treating with real-scale membranes. The results indicated that the proposed processes supplied maximum removal efficiency (100%) compared to conventional secondary and tertiary treatment methods (2-81.6%) in the removal of microplastics.
污水处理厂(WWTPs)是受纳水体中微塑料(MPs)污染的主要载体之一。因此,从 WWTP 中回收 MPs 对于减少其在水生系统中的积累和影响非常重要。在本研究中,考察了电絮凝-电浮选(EC/EF)和膜过滤工艺从废水中去除 MPs 的效果。研究了不同电极组合(Fe-Al 和 Al-Fe)、电流密度(10-20 A/m)、pH 值(4.0-10.0)和运行时间(0-120 min)对水中两种不同聚合物颗粒去除效果的影响,以获得最大的处理效率。还研究了压力(1-3 bar)对膜过滤去除效率的影响。对于两种聚合物类型,电极组合为 Al-Fe、初始 pH 值为 7、电流密度为 20 A/m 和反应时间为 10 min 时,最大去除效率均达到 100%。膜过滤方法也显示出 100%的去除效率。此外,还将这些实验室规模的结果与实际规模膜处理厂一年的平均数据进行了比较。结果表明,与传统的二级和三级处理方法(2-81.6%)相比,所提出的工艺在去除微塑料方面提供了最高的去除效率(100%)。