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海州湾人工鱼礁区及邻近海域海水柱和沉积物中微塑料的空间分布特征

Spatial distribution characteristics of microplastics in the seawater column and sediments of the artificial reef area and adjacent water in Haizhou Bay.

作者信息

Liang Baogui, Gao Shike, Wang Zheyu, Shu Ruilin, Wang Nuo, Tan Wenjing, Gao Chunmei, Zhang Shuo

机构信息

College of Marine Ecology and Environment, Shanghai Ocean University, Shanghai 201306, China.

College of Marine Sciences, Shanghai Ocean University, Shanghai 201306, China.

出版信息

Sci Total Environ. 2023 Nov 20;900:166236. doi: 10.1016/j.scitotenv.2023.166236. Epub 2023 Aug 11.

Abstract

Recently, scholars have been increasing concerned about microplastics (MPs). Unfortunately, information is lacking on the spatial distribution patterns of MPs in coastal seas; therefore, our understanding of the extent of offshore MP contamination remains incomplete. MP distribution in the seawater and surface sediments of an aquaculture area (AA), artificial reef area (AR), and comprehensive effect area (CEA) in Haizhou Bay were investigated in this study. The results showed that the mean abundances of MPs in the surface, middle and bottom seawater were 6.98 ± 3.01 n/m, 9.12 ± 3.07 n/m and 10.20 ± 2.41 n/m, respectively, and that the abundance in the sediment was 3.09 ± 1.16 n/g. The MP abundance in the bottom seawater was significantly higher than that in the surface seawater (P < 0.05). The correlation among MPs at different depths was not significant, but MPs in most habitats showed a significant correlation. We discovered a significant correlation between the abundance of MPs in the CEA seawater and AR sediments, but not between that in the CEA sediments and AR sediments. MPs can be transported from surface seawater to deeper layers by natural deposition processes. The horizontal transport of MPs due to the coastal gulf current and regular semidiurnal tides lead to the correlations observed in of MP abundance among the AA, CEA, and AR. Migration of MPs from the CEA to the AR was primarily caused by the southern eddies in Haizhou Bay, while migration of MPs from the sediment to the seawater could be due to upwelling in the AR. This was also the main reason there was a lack of a correlation between the sediment from the AR and the seawater from the CEA. This work provides a theoretical and empirical foundation for MP transport and source tracking.

摘要

最近,学者们对微塑料(MPs)的关注日益增加。遗憾的是,关于沿海水域微塑料的空间分布模式的信息匮乏;因此,我们对近海微塑料污染程度的了解仍不完整。本研究调查了海州湾一个养殖区(AA)、人工鱼礁区(AR)和综合效应区(CEA)的海水和表层沉积物中的微塑料分布情况。结果表明,表层、中层和底层海水中微塑料的平均丰度分别为6.98±3.01个/立方米、9.12±3.07个/立方米和10.20±2.41个/立方米,沉积物中的丰度为3.09±1.16个/克。底层海水中微塑料的丰度显著高于表层海水(P<0.05)。不同深度的微塑料之间的相关性不显著,但大多数栖息地的微塑料显示出显著相关性。我们发现CEA海水中微塑料的丰度与AR沉积物中的微塑料丰度之间存在显著相关性,但CEA沉积物与AR沉积物中的微塑料丰度之间不存在显著相关性。微塑料可通过自然沉积过程从表层海水输送到更深层。由于沿岸海湾流和半日潮导致的微塑料水平运输导致了在AA、CEA和AR之间观察到的微塑料丰度相关性。微塑料从CEA迁移到AR主要是由海州湾南部的涡流引起的,而微塑料从沉积物迁移到海水可能是由于AR中的上升流。这也是AR沉积物与CEA海水之间缺乏相关性的主要原因。这项工作为微塑料的运输和来源追踪提供了理论和实证基础。

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