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北太平洋亚热带环流区聚乙烯碎片中的痕量金属

Trace metals in polyethylene debris from the North Atlantic subtropical gyre.

机构信息

CNRS, UMR EcoFoG, Campus Agronomique de Kourou, 97387, Kourou, France.

OMP-GET, Laboratoire Géosciences Environnement Toulouse, CNRS-IRD-Université Toulouse III, 14, avenue Edouard Belin, 31400, Toulouse, France; IRD, GET, F-31400, Toulouse, France.

出版信息

Environ Pollut. 2019 Feb;245:371-379. doi: 10.1016/j.envpol.2018.10.043. Epub 2018 Nov 13.

Abstract

Plastic pollution in the marine environment poses threats to wildlife and habitats through varied mechanisms, among which are the transport and transfer to the food web of hazardous substances. Still, very little is known about the metal content of plastic debris and about sorption/desorption processes, especially with respect to weathering. In this study, plastic debris collected from the North Atlantic subtropical gyre was analyzed for trace metals; as a comparison, new packaging materials were also analyzed. Both the new items and plastic debris showed very scattered concentrations. The new items contained significant amounts of trace metals introduced as additives, but globally, metal concentrations were higher in the plastic debris. The results provide evidence that enhanced metal concentrations increase with the plastic state of oxidation for some elements, such as As, Ti, Ni, and Cd. Transmission electron microscopy showed the presence of mineral particles on the surface of the plastic debris. This work demonstrates that marine plastic debris carries complex mixtures of heavy metals. Such materials not only behave as a source of metals resulting from intrinsic plastic additives but also are able to concentrate metals from ocean water as mineral nanoparticles or adsorbed species.

摘要

海洋环境中的塑料污染通过多种机制对野生动物和栖息地构成威胁,其中包括危险物质的运输和转移到食物网中。然而,人们对塑料碎片中的金属含量以及吸附/解吸过程知之甚少,特别是关于风化的过程。在这项研究中,分析了从北大西洋亚热带环流中收集的塑料碎片中的痕量金属;作为比较,还分析了新的包装材料。新物品和塑料碎片的浓度都非常分散。新物品中含有大量作为添加剂引入的痕量金属,但在全球范围内,塑料碎片中的金属浓度更高。结果表明,对于某些元素,如 As、Ti、Ni 和 Cd,随着氧化状态的增加,金属浓度会增加。透射电子显微镜显示塑料碎片表面存在矿物颗粒。这项工作表明,海洋塑料碎片携带复杂的重金属混合物。这些材料不仅可以作为由于固有塑料添加剂而产生的金属的来源,而且还能够将来自海水的金属作为纳米矿物颗粒或吸附物种进行浓缩。

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