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美国明尼苏达州四个内陆湖泊中微塑料的负载和滞留的变异性。

Variability of microplastic loading and retention in four inland lakes in Minnesota, USA.

机构信息

Large Lakes Observatory, University of Minnesota Duluth, 2205 E 5th St, Duluth, MN, 55812, USA.

Large Lakes Observatory, University of Minnesota Duluth, 2205 E 5th St, Duluth, MN, 55812, USA; Department of Chemistry & Biochemistry, University of Minnesota Duluth, 1038 University Dr., Duluth, MN, 55812, USA.

出版信息

Environ Pollut. 2023 Jul 1;328:121573. doi: 10.1016/j.envpol.2023.121573. Epub 2023 Apr 10.

Abstract

Microplastic pollution (plastic particles < 5 mm) has potentially harmful impacts on aquatic ecosystems. Understanding the factors that impact microplastic loading and distribution within aquatic ecosystems is crucial for assessing potential threats from microplastics. Here we examine the extent of microplastic pollution in the surface waters and sediments of four small inland lakes in Minnesota, USA that represent a range of human impacts as well as a variety of watershed and lake characteristics. Surface water particulates and benthic sediments were collected in the summers of 2019 and 2020 to examine the loading of microplastics into these lakes and their distribution throughout the ecosystems. Lower size cut offs were set at 330 μm for surface water particulate samples and 250 μm for sediment samples. Watershed to surface area ratio (WS:SA) and urban development were the most influential factors on microplastic loading. Surface water microplastic concentrations ranged from 27,000 microplastics km in Elk Lake (small WS:SA and minimally developed) to 152,000 microplastics km in White Iron Lake (large WS:SA and low development). Concentrations in benthic sediments ranged from 30 microplastics kg dry sediment in White Iron Lake (forested watershed) to 270 microplastics kg dry sediment in Peltier Lake (urbanized watershed) and were not directly correlated to surface water concentrations. Results from this study highlight the characteristics of small lakes that influence spatial and temporal variability in microplastic loading, retention, and deposition of microplastics to sediments. Further, this study demonstrates the difficulties of accurately predicting microplastic loading and the importance of comprehensive sampling to account for the variability of microplastic loading and distribution in smaller inland lakes.

摘要

微塑料污染(粒径<5 毫米的塑料颗粒)对水生生态系统可能造成有害影响。了解影响水生生态系统中微塑料负荷和分布的因素,对于评估微塑料的潜在威胁至关重要。本研究考察了美国明尼苏达州四个小型内陆湖泊的表层水和沉积物中微塑料污染的程度,这些湖泊代表了一系列人类活动的影响以及各种流域和湖泊特征。在 2019 年和 2020 年的夏季,采集了表层水颗粒物和底栖沉积物,以研究微塑料进入这些湖泊的负荷及其在整个生态系统中的分布。为了研究微塑料的分布情况,将表层水颗粒物样品的最小尺寸设定为 330 微米,沉积物样品的最小尺寸设定为 250 微米。流域面积比(WS:SA)和城市发展是影响微塑料负荷的最重要因素。表层水中微塑料浓度范围从埃尔克湖(WS:SA 小且开发程度低)的 27,000 个微塑料公里到怀特伊铁湖(WS:SA 大且开发程度低)的 152,000 个微塑料公里。底栖沉积物中的浓度范围从怀特伊铁湖(森林流域)的 30 个微塑料公斤干沉积物到佩蒂埃湖(城市化流域)的 270 个微塑料公斤干沉积物,与表层水浓度没有直接相关性。本研究结果强调了影响微塑料负荷空间和时间变化的小型湖泊的特征,以及微塑料在沉积物中的保留和沉积。此外,本研究表明,准确预测微塑料负荷具有一定难度,全面采样对于准确评估小型内陆湖泊中微塑料负荷和分布的变异性非常重要。

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