School of Engineering, Edith Cowan University, 270 Joondalup Drive, Joondalup, WA, 6027, Australia.
Materials and Process Engineering (iMMC-IMAP), UC Louvain, Place Sainte Barbe 2, 1348, Louvain-la-Neuve, Belgium.
Chemosphere. 2021 Nov;283:131185. doi: 10.1016/j.chemosphere.2021.131185. Epub 2021 Jun 14.
The emergence and accumulation of microplastics (MPs) in various aquatic environments have recently raised significant concerns. Wastewater treatment plants (WWTPs) have been identified as one of the major sources of MPs discharge to the environment, implying a substantial need to improve advanced techniques for more efficient removal of MPs. Polymeric membranes have been proven effective in MPs removal. However, fouling is the main drawback of membrane processes and MPs can foul the membranes due to their small size and specific surface properties. Hence, it is important to investigate the impacts of MPs on membrane fouling to develop efficient membrane-based techniques for MPs removal. Although membrane technologies have a high potential for MPs removal, the interaction of MPs with membranes and their fouling effects have not been critically reviewed. The purpose of this paper is to provide a state-of-the-art review of MPs interaction with membranes and facilitate a better understanding of the relevant limitations and prospects of the membrane technologies. The first section of this paper is dedicated to a review of recent studies on MPs occurrence in WWTPs aiming to determine the most frequent MPs. This is followed by a summary of recent studies on MPs removal using membranes and discussions on the impact of MPs on membrane fouling and other probable issues (abrasion, concentration polarisation, biofouling, etc.). Finally, some recommendations for further research in this area are highlighted. This study serves as a valuable reference for future research on the development of anti-fouling membranes considering these new emerging contaminates.
微塑料(MPs)在各种水生环境中的出现和积累最近引起了人们的高度关注。污水处理厂(WWTPs)已被确定为 MPs 向环境排放的主要来源之一,这意味着需要改进先进技术,以更有效地去除 MPs。聚合物膜已被证明在去除 MPs 方面有效。然而,膜污染是膜过程的主要缺点,由于 MPs 的尺寸小和比表面积大,它们可能会污染膜。因此,研究 MPs 对膜污染的影响对于开发有效的基于膜的 MPs 去除技术非常重要。虽然膜技术在去除 MPs 方面具有很高的潜力,但 MPs 与膜的相互作用及其污染效应尚未得到严格审查。本文的目的是对 MPs 与膜的相互作用进行综述,以促进更好地理解膜技术的相关局限性和前景。本文的第一部分专门回顾了 WWTPs 中 MPs 存在的最新研究,旨在确定最常见的 MPs。其次,总结了最近使用膜去除 MPs 的研究,并讨论了 MPs 对膜污染和其他可能问题(磨损、浓差极化、生物污染等)的影响。最后,强调了该领域进一步研究的一些建议。这项研究为考虑这些新出现的污染物的抗污染膜的进一步研究提供了有价值的参考。