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北海鱼类中塑料摄入和纤维污染的详细信息。

Details of plastic ingestion and fibre contamination in North Sea fishes.

机构信息

Wageningen Marine Research, Ankerpark 27, 1781 AG, Den Helder, the Netherlands.

Wageningen Marine Research, Ankerpark 27, 1781 AG, Den Helder, the Netherlands.

出版信息

Environ Pollut. 2020 Feb;257:113569. doi: 10.1016/j.envpol.2019.113569. Epub 2019 Nov 5.

DOI:10.1016/j.envpol.2019.113569
PMID:31753635
Abstract

This study combines published datasets with unpublished data on plastic ingestion in several North Sea fish species. The combined dataset of 4389 individuals from 15 species allows the analysis of spatial distribution and temporal variability of plastic uptake in fish. Airborne fibre contamination was observed to be the main contributor to fibres encountered in the samples. The number of fibres in samples was strongly related to the time needed to process a sample, not to the number of individual fishes in the sample. Accurate correction for secondary fibre contamination was not possible, but corrections required would be similar to fibre numbers observed in the samples. Consequently, all fibres were omitted from further analysis. The frequency of occurrence and the average number of plastics in fish is generally low (1.8% and 0.022 pieces per organism respectively), with only cod having a higher prevalence (12.3%). While latitude of catch locations influences plastic uptake in fish, no correlation with the distance to the coast was found. Slightly less plastics were ingested in winter, and a decrease in plastics ingested was observed between 2009 and 2018. These factors should be considered when fish species, catch location and time are discussed as indicators for plastic pollution in the European Marine Strategy Framework Directive. We recommend considering demersal cod and pelagic sprat as two species suitable for monitoring plastic ingestion in biota, both on the seafloor and in the water column.

摘要

本研究结合了已发表的数据集和未发表的关于北海几种鱼类塑料摄入的数据。来自 15 个物种的 4389 个个体的综合数据集允许分析鱼类中塑料摄入的空间分布和时间可变性。观察到空气中纤维的污染是样品中纤维的主要来源。样品中的纤维数量与处理样品所需的时间密切相关,而与样品中个体鱼类的数量无关。无法对二次纤维污染进行准确校正,但所需的校正与样品中观察到的纤维数量相似。因此,所有纤维均从进一步分析中删除。鱼类中塑料的出现频率和平均数量通常较低(分别为 1.8%和 0.022 个/个体),只有鳕鱼的患病率较高(12.3%)。虽然鱼类中塑料的摄入受捕捞地点的纬度影响,但未发现与距海岸的距离有关。冬季摄入的塑料略少,并且在 2009 年至 2018 年间观察到摄入的塑料量减少。在讨论鱼类物种、捕捞地点和时间作为欧洲海洋战略框架指令中塑料污染的指标时,应考虑这些因素。我们建议考虑底栖鳕鱼和中上层鲱鱼作为监测生物体内塑料摄入的两种合适的物种,包括海底和水柱中。

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