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海洋环境中塑料聚合物类型的分布:一项荟萃分析。

Distribution of plastic polymer types in the marine environment; A meta-analysis.

机构信息

School of Life Sciences, University of Warwick, Coventry, CV4 7AL, UK.

School of Life Sciences, University of Warwick, Coventry, CV4 7AL, UK.

出版信息

J Hazard Mater. 2019 May 5;369:691-698. doi: 10.1016/j.jhazmat.2019.02.067. Epub 2019 Feb 21.

Abstract

Despite growing plastic discharge into the environment, researchers have struggled to detect expected increases of marine plastic debris in sea surfaces, sparking discussions about "missing plastics" and final sinks, which are hypothesized to be coastal and deep-sea sediments. While it holds true that the highest concentrations of plastic particles are found in these locations (10-10 particles m in sediments vs. 0.1-1 particles m in the water column), our meta-analysis also highlights that in open oceans, microplastic polymer types segregated in the water column according to their density. Lower density polymers, such as polypropylene and polyethylene, dominated sea surface samples (25% and 42%, respectively) but decreased in abundance through the water column (3% and 2% in the deep-sea, respectively), whereas only denser polymers (i.e. polyesters and acrylics) were enriched with depth (5% in surface seawater vs. 77% in deep-sea locations). Our meta-analysis demonstrates that some of the most abundant and recalcitrant manufactured plastics are more persistent in the sea surface than previously anticipated and that further research is required to determine the ultimate fate of these polymers as current knowledge does not support the deep sea as the final sink for all polymer types.

摘要

尽管塑料不断排入环境,但研究人员仍难以检测到预期的海洋塑料碎片在海表面的增加,这引发了关于“缺失塑料”和最终汇的讨论,这些塑料被假设存在于沿海和深海沉积物中。虽然确实在这些地方(沉积物中的塑料颗粒浓度最高为 10-10 个颗粒/m,而水柱中的浓度为 0.1-1 个颗粒/m)发现了最高浓度的塑料颗粒,但我们的荟萃分析还强调,在开阔的海洋中,微塑料聚合物类型根据其密度在水柱中分离。低密度聚合物,如聚丙烯和聚乙烯,主导着海面样本(分别为 25%和 42%),但随着水柱的深度增加,其丰度降低(深海中分别为 3%和 2%),而只有密度较高的聚合物(即聚酯和丙烯酸酯)随着深度的增加而富集(海面水中为 5%,深海中为 77%)。我们的荟萃分析表明,一些最丰富和最难降解的人造塑料在海表面的持久性比之前预期的要长,需要进一步研究以确定这些聚合物的最终命运,因为目前的知识并不能支持所有聚合物类型都最终汇于深海。

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