Department of Biomedical Sciences, School of Biosciences and Technology, Vellore Institute of Technology (VIT), Vellore, Tamil Nadu, 632014, India.
Department of Biosciences, School of Biosciences and Technology, Vellore Institute of Technology (VIT), Vellore, Tamil Nadu, 632014, India.
Chemosphere. 2022 Sep;303(Pt 3):135232. doi: 10.1016/j.chemosphere.2022.135232. Epub 2022 Jun 4.
Microplastics (MPs) have become a significant source of concern as they have emerged as a widespread pollutant that harms the aquatic environment. It has become an enormous challenge, having the capacity to biomagnify and eventually affect human health, biodiversity, aquatic animals, and the environment. This review provides in-depth knowledge of how MPs interact with different toxic organic chemicals, antibiotics, and heavy metals in the aquatic environment and its consequences. Membrane technologies like ultrafiltration (UF), nanofiltration (NF), microfiltration (MF), and dynamic membranes can be highly effective techniques for the removal of MPs. Also, hybrid membrane techniques like advanced oxidation processes (AOPs), membrane fouling, electrochemical processes, and adsorption processes can be incorporated for superior efficiency. The review also focuses on the reactor design and performance of several membrane-based filters and bioreactors to develop practical, feasible, and sustainable membrane technologies. The main aim of this work is to throw light on the alarming scenario of microplastic pollution in the aquatic milieu and strategies that can be adopted to tackle it.
微塑料(MPs)已成为一个重要的关注点,因为它们已成为一种广泛存在的污染物,对水生环境造成危害。它具有生物放大的能力,并最终影响人类健康、生物多样性、水生动物和环境,这是一个巨大的挑战。本综述深入探讨了 MPs 如何与水生环境中的不同有毒有机化学品、抗生素和重金属相互作用及其后果。膜技术,如超滤(UF)、纳滤(NF)、微滤(MF)和动态膜,是去除 MPs 的高效技术。此外,还可以结合高级氧化工艺(AOPs)、膜污染、电化学过程和吸附过程等混合膜技术,以提高效率。该综述还重点介绍了几种基于膜的过滤器和生物反应器的反应器设计和性能,以开发实用、可行和可持续的膜技术。这项工作的主要目的是阐明水生环境中微塑料污染的严峻情况,以及可以采取的应对策略。