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纳米材料在水生环境中修复微塑料:为什么纳米很重要?

Nanomaterials for microplastic remediation from aquatic environment: Why nano matters?

机构信息

Advanced Membrane Technology Research Centre, School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310, Johor Bahru, Malaysia.

Marine Technology Centre, Institute for Vehicle System & Engineering, School of Mechanical Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310, Johor Bahru, Malaysia.

出版信息

Chemosphere. 2022 Jul;299:134418. doi: 10.1016/j.chemosphere.2022.134418. Epub 2022 Mar 26.

Abstract

The contamination of microplastics in aquatic environment is regarded as a serious threat to ecosystem especially to aquatic environment. Microplastic pollution associated problems including their bioaccumulation and ecological risks have become a major concern of the public and scientific community. The removal of microplastics from their discharge points is an effective way to mitigate the adverse effects of microplastic pollution, hence has been the central of the research in this realm. Presently, most of the commonly used water or wastewater treatment technologies are capable of removing microplastic to certain extent, although they are not intentionally installed for this reason. Nevertheless, recognizing the adverse effects posed by microplastic pollution, more efforts are still desired to enhance the current microplastic removal technologies. With their structural multifunctionalities and flexibility, nanomaterials have been increasingly used for water and wastewater treatment to improve the treatment efficiency. Particularly, the unique features of nanomaterials have been harnessed in synthesizing high performance adsorbent and photocatalyst for microplastic removal from aqueous environment. This review looks into the potentials of nanomaterials in offering constructive solutions to resolve the bottlenecks and enhance the efficiencies of the existing materials used for microplastic removal. The current efforts and research direction of which studies can dedicate to improve microplastic removal from water environment with the augmentation of nanomaterial-enabled strategies are discussed. The progresses made to date have witnessed the benefits of harnessing the structural and dimensional advantages of nanomaterials to enhance the efficiency of existing microplastic treatment processes to achieve a more sustainable microplastic cleanup.

摘要

微塑料在水生环境中的污染被认为是对生态系统的严重威胁,尤其是对水生环境。与微塑料污染相关的问题,包括它们的生物积累和生态风险,已经成为公众和科学界的主要关注点。从排放点去除微塑料是减轻微塑料污染不利影响的有效方法,因此一直是该领域研究的核心。目前,大多数常用的水或废水处理技术都能够在一定程度上去除微塑料,尽管它们不是为此而专门设计的。然而,鉴于微塑料污染的不利影响,仍需要更多的努力来增强现有的微塑料去除技术。纳米材料具有结构多功能性和灵活性,已越来越多地用于水和废水处理,以提高处理效率。特别是,纳米材料的独特特性已被用于合成高性能吸附剂和光催化剂,以去除水环境污染中的微塑料。本综述探讨了纳米材料在为解决现有微塑料去除材料的瓶颈问题和提高效率提供建设性解决方案方面的潜力。讨论了目前的努力和研究方向,以及研究可以致力于利用纳米材料增强策略从水环境中去除微塑料的方向。迄今为止取得的进展证明了利用纳米材料的结构和尺寸优势来提高现有微塑料处理工艺效率的好处,以实现更可持续的微塑料清理。

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