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Microplastics in lakeshore and lakebed sediments - External influences and temporal and spatial variabilities of concentrations

机译:湖岸和湖床沉积物的微塑料 - 外部影响和浓度的时空和空间可变性

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摘要

Microplastics have been predominantly studied in marine environments compared to freshwater systems. However, the number of studies analyzing microplastic concentrations in water and sediment within lakes and rivers are increasing and are of utmost importance as freshwaters are major pathways for plastics to the oceans. To allow for an adequate risk assessment, detailed knowledge concerning plastic concentrations in different environmental compartments of freshwaters are necessary. Therefore, the major aim of this study was the quantification and analysis of temporal and spatial distribution of microplastics (<5 mm) in freshwater shore and bed sediments at Lake Tollense, Mecklenburg-Western Pomerania, Germany. Likewise, it addresses the hypothesis that lakes may serve as long-term storage basins for microplastics. Concentrations were investigated semi-annually over a two-year period at four sandy bank border segments representing different expositions and levels of anthropogenic influence. In addition, lakebed samples were taken along the longitudinal dimension of Lake Tollense. Mean microplastic abundances were 1,410 ± 822 particles/kg DW for lakeshore sediments and 10,476 ± 4,290 particles/kg DW for lakebed sediments. Fragments were more abundant compared to fibers in both sediment compartments. Spatial and temporal variation was especially recognized for lakeshore sediments whereas microplastic abundances in lakebed sediments did not differ significantly between sampling points and sampling campaigns. This can be related to long-term accumulation at the lakebed. Lower microplastic abundances were found within the intertidal zone at lake beaches where constant wave action reduces accumulation. Increased microplastic abundances were recognized at the beach with least anthropogenic influence but in proximity to a tributary, which may serve as microplastic input pathway into Lake Tollense due to its catchment comprising mainly agricultural areas. Furthermore, spatial variations in microplastic concentrations were related to the abundance of macroplastic items at beaches and correlated with pedologic sediment characteristics, namely the content of organic matter.
机译:与淡水系统相比,在海洋环境中主要研究微塑料。然而,分析湖泊和河流内水和沉积物中的微塑性浓度的研究数量正在增加,并且由于新温水是海洋塑料的主要途径,至关重要。为了允许充分的风险评估,需要详细了解新水域不同环境隔间的塑性浓度。因此,本研究的主要目的是德国湖麦克伦湖西部淡水岸边和床沉积物中微型岸边(<5毫米)的时间和空间分布的量化和分析。同样,它解决了湖泊可用作微塑料的长期储存盆的假设。在四个桑迪银行边境段的两年内每半年调查浓度,代表不同的博览会和人为影响水平。此外,湖床样本沿湖龙湖纵向尺寸。平均微塑性丰度为1,410±822颗粒/ kg dw,用于湖岸沉积物,10,476±4,290颗粒/ kg dw用于湖床沉积物。与两个沉积室中的纤维相比,片段更丰富。对于湖岸沉积物特别认识到空间和时间变化,而采样点与采样活动之间的湖床沉积物中的微塑性丰度没有显着差异。这可能与湖床的长期积累有关。在恒波作用减少累积的湖泊海滩的潮间区内发现了较低的微塑性丰富。在海滩上识别出增加的微塑性丰度,具有最小的人为影响,但靠近支流,这可能用作由于其主要包括农业领域的集水区的微塑性输入途径。此外,微塑性浓度的空间变化与海滩上的宏相物质的丰度有关,与神学沉积物特征相关,即有机物质的含量。

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  • 来源
    《Environmental research 》 |2021年第1期| 111141.1-111141.16| 共16页
  • 作者单位

    Center for Earth System Research and Sustainability (CEN) Universitaet Hamburg Bundesstrasse 55 20146 Hamburg Germany;

    Institute for Theoretical Physics Justus-Liebig-Universitaet Giessen Heinrich-Buff-Ring 16 35392 Giefien Germany;

    Fraunhofer Institute for Intelligent Analysis and Information Systems (IAIS) Schloss Birlinghoven 53757 Sankt Augustin Germany;

    Center for Earth System Research and Sustainability (CEN) Universitaet Hamburg Bundesstrasse 55 20146 Hamburg Germany;

    Center for Earth System Research and Sustainability (CEN) Universitaet Hamburg Bundesstrasse 55 20146 Hamburg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microplastics; Lakeshore sediment; Lakebed sediment; Freshwater; Nile red;

    机译:微塑料;湖岸沉积物;湖床沉积物;淡水;尼罗河红色;

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