Xue Jinkai, Samaei Seyed Hesam-Aldin, Chen Jianfei, Doucet Ariana, Ng Kelvin Tsun Wai
Environmental Systems Engineering, Faculty of Engineering & Applied Science, University of Regina, 3737 Wascana Parkway, Regina, SK S4S 0A2 Canada.
Front Environ Sci Eng. 2022;16(5):58. doi: 10.1007/s11783-021-1492-5. Epub 2021 Oct 15.
Microplastics (MPs) have been widely detected in drinking water sources and tap water, raising the concern of the effectiveness of drinking water treatment plants (DWTPs) in protecting the public from exposure to MPs through drinking water. We collected and analyzed the available research articles up to August 2021 on MPs in drinking water treatment (DWT), including laboratory- and full-scale studies. This article summarizes the major MP compositions (materials, sizes, shapes, and concentrations) in drinking water sources, and critically reviews the removal efficiency and impacts of MPs in various drinking water treatment processes. The discussed drinking water treatment processes include coagulation-flocculation (CF), membrane filtration, sand filtration, and granular activated carbon (GAC) filtration. Current DWT processes that are purposed for particle removal are generally effective in reducing MPs in water. Various influential factors to MP removal are discussed, such as coagulant type and dose, MP material, shape and size, and water quality. It is anticipated that better MP removal can be achieved by optimizing the treatment conditions. Moreover, the article framed the major challenges and future research directions on MPs and nanoplastics (NPs) in DWT.
微塑料(MPs)已在饮用水源和自来水中被广泛检测到,这引发了人们对饮用水处理厂(DWTPs)在保护公众免受通过饮用水接触微塑料方面有效性的担忧。我们收集并分析了截至2021年8月关于饮用水处理(DWT)中微塑料的现有研究文章,包括实验室研究和全规模研究。本文总结了饮用水源中微塑料的主要组成(材料、尺寸、形状和浓度),并批判性地综述了微塑料在各种饮用水处理过程中的去除效率及影响。所讨论的饮用水处理过程包括混凝-絮凝(CF)、膜过滤、砂滤和颗粒活性炭(GAC)过滤。当前旨在去除颗粒的饮用水处理工艺通常在减少水中微塑料方面是有效的。讨论了影响微塑料去除的各种因素,如混凝剂类型和剂量、微塑料材料、形状和尺寸以及水质。预计通过优化处理条件可以实现更好的微塑料去除效果。此外,本文阐述了饮用水处理中微塑料和纳米塑料(NPs)面临的主要挑战及未来研究方向。