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北太平洋亚热带回旋区内塑料中的污染物。

Pollutants in Plastics within the North Pacific Subtropical Gyre.

机构信息

The Ocean Cleanup Foundation, Martinus Nijhofflaan 2, 2624 ES Delft, The Netherlands.

Department of Ecosystem Analysis, Institute for Environmental Research, ABBt - Aachen Biology and Biotechnology, RWTH Aachen University , 1 Worringerweg, 52074 Aachen, Germany.

出版信息

Environ Sci Technol. 2018 Jan 16;52(2):446-456. doi: 10.1021/acs.est.7b04682. Epub 2017 Dec 21.

Abstract

Here we report concentrations of pollutants in floating plastics from the North Pacific accumulation zone (NPAC). We compared chemical concentrations in plastics of different types and sizes, assessed ocean plastic potential risks using sediment quality criteria, and discussed the implications of our findings for bioaccumulation. Our results suggest that at least a fraction of the NPAC plastics is not in equilibrium with the surrounding seawater. For instance, "hard plastic" samples had significantly higher PBDE concentrations than "nets and ropes" samples, and 29% of them had PBDE composition similar to a widely used flame-retardant mixture. Our findings indicate that NPAC plastics may pose a chemical risk to organisms as 84% of the samples had at least one chemical exceeding sediment threshold effect levels. Furthermore, our surface trawls collected more plastic than biomass (180 times on average), indicating that some NPAC organisms feeding upon floating particles may have plastic as a major component of their diets. If gradients for pollutant transfer from NPAC plastic to predators exist (as indicated by our fugacity ratio calculations), plastics may play a role in transferring chemicals to certain marine organisms.

摘要

我们报告了北太平洋堆积区(NPAC)浮塑料中的污染物浓度。我们比较了不同类型和大小的塑料中的化学浓度,使用沉积物质量标准评估了海洋塑料的潜在风险,并讨论了我们研究结果对生物积累的影响。我们的结果表明,至少有一部分 NPAC 塑料与周围海水未达到平衡。例如,“硬塑料”样本中的 PBDE 浓度明显高于“网和绳索”样本,其中 29%的样本的 PBDE 组成与一种广泛使用的阻燃混合物相似。我们的研究结果表明,NPAC 塑料可能对生物体构成化学风险,因为 84%的样本中至少有一种化学物质超过了沉积物阈效应水平。此外,我们的表层拖网收集的塑料比生物量多(平均 180 倍),这表明某些以浮质颗粒为食的 NPAC 生物体的饮食中可能主要含有塑料。如果从 NPAC 塑料到捕食者的污染物转移梯度确实存在(如我们的逸度比计算所示),那么塑料可能在将化学物质转移到某些海洋生物体方面发挥作用。

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