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化学污染物与微塑料的相互作用:原理与展望。

Interaction of chemical contaminants with microplastics: Principles and perspectives.

机构信息

Analytical and Environmental Chemistry Unit, Department of Chemistry, Covenant University, Km 10 Idiroko Road, Ota, Nigeria.

Global Innovative Centre for Advanced Nanomaterials, School of Engineering, University of Newcastle, Callaghan, NSW 2308, Australia.

出版信息

Sci Total Environ. 2020 Mar 1;706:135978. doi: 10.1016/j.scitotenv.2019.135978. Epub 2019 Dec 16.

Abstract

Scientific evidences abound of the occurrence of plastic pollution, from mega- to nano-sized plastics, in virtually all matrixes of the environment. Apart from the direct effects of plastics and microplastics pollution such as entanglement, inflammation of cells and gut blockage due to ingestion, plastics are also able to act as vectors of various chemical contaminants in the aquatic environment. This paper provides a review of the association of plastic additives with environmental microplastics, how the structure and composition of polymers influence sorption capacities and highlights some of the models that have been employed to interpret experimental data from recent sorption studies. The factors that influence the sorption of chemical contaminants such as the degree of crystallinity, surface weathering, and chemical properties of contaminants. and the implications of chemical sorption by plastics for the marine food web and human health are also discussed. It was however observed that most studies relied on pristine or artificially aged plastics rather than field plastic samples for studies on chemical sorption by plastics.

摘要

科学证据表明,塑料污染无处不在,从大型到纳米级塑料,几乎存在于环境的所有基质中。除了塑料和微塑料污染的直接影响,如因摄入而导致的缠绕、细胞炎症和肠道堵塞,塑料还能够作为水环境污染中各种化学污染物的载体。本文综述了塑料添加剂与环境微塑料的关联,聚合物的结构和组成如何影响吸附能力,并重点介绍了一些已被用于解释最近吸附研究实验数据的模型。影响化学污染物吸附的因素,如结晶度、表面风化和污染物的化学性质,以及塑料对海洋食物网和人类健康的化学吸附的影响也进行了讨论。然而,观察到大多数研究依赖于原始或人工老化的塑料,而不是实地塑料样本,来研究塑料的化学吸附。

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