微塑料的降解方法及相应的降解机制:研究现状与未来展望。
Microplastic degradation methods and corresponding degradation mechanism: Research status and future perspectives.
机构信息
Joint Laboratory of Guangdong Province and Hong Kong Region on Marine Bioresource Conservation and Exploitation, College of Marine Sciences, South China Agricultural University, Guangzhou 510642, China.
School of Bioengineering and Food Science, Hubei University of Technology, Wuhan 430068, Hubei, China.
出版信息
J Hazard Mater. 2021 Sep 15;418:126377. doi: 10.1016/j.jhazmat.2021.126377. Epub 2021 Jun 10.
Microplastics (MPs) pollution has become a global environmental concern because of their severe threat to biota. However, limited studies on the elimination of MPs pollution were reported. The conventional treatment methods were not suitable for MPs owing to their smaller size than plastic items. Hence many methods for MPs treatment have been examined. This review summarized the recently reported MPs degradation methods including AOPs (direct photodegradation, photocatalytic oxidation, and electrochemical oxidation) and biodegradation, corresponding degradation mechanism as well as current development state. The characteristics and limitations of each technique were discussed in detail. We found that all of them achieved almost satisfying degradation performance of MPs, but most of them exhibited that MPs can only be degraded partially into useful products or even CO and HO under lab conditions. Given these, some recommendations for future research directions were proposed based on the knowledge gaps in these reported literatures. The aim of this review is to give a comprehensive introduction of several MPs degradation methods and acquaint the readers with the current research status of MPs degradation.
微塑料(MPs)污染因其对生物群的严重威胁而成为全球关注的环境问题。然而,据报道,针对 MPs 污染的消除方法有限。由于 MPs 的尺寸小于塑料物品,传统的处理方法并不适用于 MPs。因此,已经研究了许多处理 MPs 的方法。本综述总结了最近报道的 MPs 降解方法,包括 AOPs(直接光降解、光催化氧化和电化学氧化)和生物降解,以及相应的降解机制和当前的发展状况。详细讨论了每种技术的特点和局限性。我们发现,它们都几乎达到了令人满意的 MPs 降解性能,但大多数研究表明,在实验室条件下, MPs 只能部分降解为有用产品,甚至只能降解为 CO 和 HO。鉴于此,根据这些报道文献中的知识空白,提出了一些未来研究方向的建议。本综述的目的是全面介绍几种 MPs 降解方法,并使读者了解 MPs 降解的当前研究状况。