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影响北美休伦湖近岸和离岸沉积物中微塑料空间分布的因素。

Factors driving the spatial distribution of microplastics in nearshore and offshore sediment of Lake Huron, North America.

作者信息

Belontz Sara L, Corcoran Patricia L, de Haan-Ward Johanna, Helm Paul A, Marvin Chris

机构信息

Department of Earth Sciences, University of Western Ontario, London, ON N6A 5B7, Canada.

Department of Statistical and Actuarial Sciences, University of Western Ontario, London, ON N6A 5B7, Canada.

出版信息

Mar Pollut Bull. 2022 Jun;179:113709. doi: 10.1016/j.marpolbul.2022.113709. Epub 2022 May 16.

Abstract

Offshore and nearshore sediment samples from Lake Huron, North America, were analysed for microplastics. Normalized abundances ranged from 59 to 335,714 particles per kg of dry weight sediment (p kg dw). Of the four main basins of Lake Huron, the North Channel contained the greatest microplastic abundances, averaging 47,398 p kg dw, followed by Georgian Bay (21,390 p kg dw), the main basin (15,910 p kg dw) and Saginaw Bay (1592 p kg dw). Results indicate that greater lake depths (p = 0.004), associated with finer grained sediment (p = 0.048), are significant zones of deposition. Regression analysis reveals that source-driven factors generally do not account for microplastic abundances and distribution. Instead, process-driven hydrodynamic forces such as waves and surface currents could be driving distribution and deposition into the offshore environment. The findings suggest that these often overlooked processes should be considered when investigating microplastics quantity in bottom sediment of large lakes.

摘要

对来自北美休伦湖的近海和近岸沉积物样本进行了微塑料分析。标准化丰度范围为每千克干重沉积物59至335,714个颗粒(p kg dw)。在休伦湖的四个主要流域中,北通道的微塑料丰度最高,平均为47,398 p kg dw,其次是乔治亚湾(21,390 p kg dw)、主盆地(15,910 p kg dw)和萨吉诺湾(1592 p kg dw)。结果表明,较深的湖底(p = 0.004)与较细颗粒的沉积物(p = 0.048)相关,是重要的沉积区域。回归分析表明,源驱动因素通常不能解释微塑料的丰度和分布情况。相反,诸如波浪和表层水流等过程驱动的水动力可能推动了微塑料在近海环境中的分布和沉积。研究结果表明,在调查大型湖泊底部沉积物中的微塑料数量时,应考虑这些经常被忽视的过程。

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