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五年来楚科奇海沉积物中微塑料污染的时空变化。

Spatio-temporal variation of microplastic pollution in the sediment from the Chukchi Sea over five years.

机构信息

Laboratory of Marine Biology and Ecology, Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361102, China.

Fujian Key Laboratory of Functional Marine Sensing Materials, Institute of Oceanography, Minjiang University, Fuzhou 350108, China.

出版信息

Sci Total Environ. 2022 Feb 1;806(Pt 1):150530. doi: 10.1016/j.scitotenv.2021.150530. Epub 2021 Sep 24.

Abstract

Sediment has been considered as an important sink for microplastics (MPs), but there are limited reports about the spatial and temporal variability of MPs in sediment from the Arctic Ocean. Furthermore, understanding is lacking on the correlation between Arctic sea ice variation and MP abundance in sediment. This study aimed to assess the MP contamination in the sediment from the Chukchi Sea over five years through three voyages (in 2016, 2018, and 2020). The MP abundances in the sediments from the Chukchi Plateau and Chukchi Shelf over five years ranged from 33.66 ± 15.08 to 104.54 ± 28.07 items kg dry weight (DW) and 20.63 ± 6.71 to 55.64 ± 22.61 items kg DW, respectively. The MP levels from the Chukchi Sea were lower than those from the Eastern Arctic Ocean. Our findings suggest that the Chukchi Plateau is an accumulation zone for fibers related to fishing gear and textiles under the dual influence of the Pacific and Atlantic Ocean currents. However, the reduction of these fibers in the sediment from the Chukchi Shelf might be related to bottom currents, sediment resuspension, and biomass. Moreover, the MP abundance in the sediment from the Chukchi Sea was positively correlated with the reduction of Arctic sea ice, suggesting that the melting sea ice contributes to the increase in MP levels in the sediment. The increase in blue MPs from the Chukchi Plateau over time might be attributed to melting sea ice or intense fishing activity, whereas the increase of the smallest MPs in this region could be owing to the breakdown of larger plastics during long-distance transport or the easier settlement of smaller MPs. Further time-series investigations are urgently required to improve the understanding of the environmental fate and transport of MPs among the different Arctic environmental compartments.

摘要

沉积物被认为是微塑料(MPs)的重要汇,但有关北极海洋沉积物中 MPs 的空间和时间变化的报道有限。此外,对于北极海冰变化与沉积物中 MP 丰度之间的相关性,人们的了解还很缺乏。本研究通过三次航行(2016 年、2018 年和 2020 年),评估了五年间楚科奇海沉积物中的 MP 污染情况。楚科奇高原和楚科奇陆架沉积物中五年的 MP 丰度范围分别为 33.66±15.08 至 104.54±28.07 个项目 kg 干重(DW)和 20.63±6.71 至 55.64±22.61 个项目 kg DW。楚科奇海的 MP 水平低于东极海洋。我们的研究结果表明,在太平洋和大西洋洋流的双重影响下,楚科奇高原是与渔具和纺织品有关的纤维的积累区。然而,楚科奇陆架沉积物中这些纤维的减少可能与底流、沉积物再悬浮和生物量有关。此外,楚科奇海沉积物中的 MP 丰度与北极海冰减少呈正相关,表明融化的海冰导致沉积物中 MP 水平增加。楚科奇高原沉积物中蓝色 MPs 的增加可能归因于海冰融化或渔业活动加剧,而该地区最小 MPs 的增加可能是由于长途运输过程中较大塑料的破裂或较小 MPs 更容易沉降。迫切需要进行更多的时间序列研究,以提高对不同北极环境区系中 MPs 的环境归宿和迁移的理解。

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