Department of Chemistry and Biochemistry, University of Minnesota Duluth, 1038 University Dr. , Duluth , Minnesota 55812, United States.
Large Lakes Observatory and Department of Chemistry and Biochemistry, University of Minnesota Duluth, 2205 East Fifth St. , Duluth , Minnesota 55812, United States.
Environ Sci Technol. 2024 May 14;58(19):8480-8489. doi: 10.1021/acs.est.3c10776. Epub 2024 May 2.
Identifying the sources and fate of microplastics in natural systems has garnered a great deal of attention because of their implications for ecosystem health. This work characterizes the size fraction, morphology, color, and polymer composition of microplastics in western Lake Superior and its adjacent harbor sampled in August and September 2021. The results reveal that the overall microplastic counts are similar, with the harbor stations ranging from 0.62 to 3.32 microplastics per liter and the lake stations ranged from 0.83 to 1.4 microplastics per liter. However, meaningful differences between the sample locations can be seen in the size fraction trends and polymer composition. Namely, the harbor samples had relatively larger amounts of the largest size fraction and more diversity of polymer types, which can be attributed to the urbanized activity and shorter water residence time. Power law size distribution modeling reveals deviations that help in the understanding of potential sources and removal mechanisms, although it significantly underpredicts microplastic counts for smaller-sized particles (5-45 μm), as determined by comparison with concurrently collected microplastic samples enumerated by Nile Red staining and flow cytometry.
由于微塑料对生态系统健康的影响,确定自然系统中微塑料的来源和归宿引起了广泛关注。本工作描述了 2021 年 8 月和 9 月在苏必利尔湖西部及其邻近港口采集的微塑料的粒径分布、形态、颜色和聚合物组成特征。结果表明,总微塑料计数相似,港口站位每升范围为 0.62 至 3.32 个微塑料,而湖泊站位每升范围为 0.83 至 1.4 个微塑料。然而,在粒径分布趋势和聚合物组成方面,可以看出采样地点之间存在有意义的差异。具体而言,港口样本中较大粒径的数量相对较多,聚合物类型也更多,这归因于城市化活动和较短的水停留时间。幂律尺寸分布模型揭示了有助于理解潜在来源和去除机制的偏差,尽管与同时采集的用尼罗红染色和流动细胞术计数的微塑料样本相比,该模型对较小粒径(5-45μm)的微塑料计数预测显著偏低。