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Tracing microplastics in aquatic environments based on sediment analogies

机译:基于沉积物类比的水生环境中的追踪微塑料

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摘要

Microplastics (MP) data collection from the aquatic environment is a challenging endeavour that sets apparent limitations to regional and global MP quantification. Expensive data collection causes small sample sizes and oftentimes existing data sets are compared without accounting for natural variability due to hydrodynamic processes governing the distribution of particles. In Warnow estuarine sediments (Germany) we found significant correlations between high-density polymer size fractions (≥500?mm) and sediment grain size. Among potential predictor variables (source and environmental terms) sediment grain size was the critical proxy for MP abundance. The MP sediment relationship can be explained by the force necessary to start particle transport: at the same level of fluid motion, transported sediment grains and MP particles are offset in size by one to two orders of magnitude. Determining grain-size corrected MP abundances by fractionated granulometric normalisation is recommended as a basis for future MP projections and identification of sinks and sources.
机译:微型环境的微型塑料(MP)数据收集是一个具有挑战性的努力,对区域和全球MP量化奠定了明显的局限性。昂贵的数据收集导致小样本尺寸,并且在不算导致颗粒分布的流体动力学过程的情况下比较了现有数据集的情况下,而不会计进行自然变化。在Warnow Bestuarine沉积物(德国)中,我们发现高密度聚合物尺寸馏分(≥500Ωmm)和沉积物粒度之间的显着相关性。在潜在的预测因子变量(源和环境术语)中,沉积物粒度是MP丰度的关键代理。 MP沉积物关系可以通过开始颗粒传输所需的力来解释:在相同的流体运动水平时,输送的沉积物颗粒和MP颗粒的大小偏移一到两个数量级。建议通过分级粒度归一化确定晶粒尺寸校正的MP丰度作为未来MP投影的基础,并识别水槽和源。

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