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A review of microplastics in sediments: Spatial and temporal occurrences, biological effects, and analytic methods

机译:沉积物中的微塑性综述:时空分布,生物学效应和分析方法

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The persistence and prevalence of microplastics in the environment have raised concerns among scientists, the general public, and environmental regulatory agencies, and a large number of studies on microplastics in sediments have been published. We reviewed those studies and focused on understanding the spatial and temporal variations, biological effects, and analytic methods of microplastics in sediments. Microplastics are widely distributed in marine and freshwater sediments. The distribution of microplastics is mainly influenced by anthropogenic input and environmental processes that determine the transportation, transformation and accumulation. The appearance of microplastics in sedimentary records has been proposed as a stratigraphic marker for the onset of the Anthropocene Epoch. Our current understanding of biological effects of microplastics is based mainly on field research and laboratory-scale experiments using unrealistic concentration and limited forms of microplastics. Future studies should consider environmentally relevant concentration, the diverse composition and form of microplastics presenting in the natural environment. Density separation method for separation of microplastics in sediments is the most commonly used, and component identification by optical analysis (Fourier-transform infrared spectroscopy spectra, Raman spectra etc.) are important analytic methods. Yet the separation method remains to be standardized across laboratories. Other separation methods include electrostatics separation, organic solvent extraction and magnet separation. We recommend the combination of density separation, electrostatic separation and organic solvent separation to improve the separation efficiency of microplastics and to standardize the analytic process for sediment microplastics in future studies.
机译:微塑料在环境中的持久性和普遍性引起了科学家,公众和环境管理机构的关注,并且已发表了大量有关沉积物中微塑料的研究。我们回顾了这些研究,并着重于了解沉积物中微塑料的时空变化,生物学效应和分析方法。微塑料广泛分布在海洋和淡水沉积物中。微塑料的分布主要受人为输入和决定运输,转化和积累的环境过程的影响。有人提出在沉积记录中出现微塑性物质,作为人类世开始的地层标志。我们目前对微塑料的生物学效应的了解主要基于使用不切实际的浓度和有限形式的微塑料的现场研究和实验室规模的实验。未来的研究应考虑与环境有关的浓度,自然环境中存在的微塑料的不同组成和形式。最常用的密度分离法是分离沉积物中的微塑料,通过光学分析(傅立叶变换红外光谱,拉曼光谱等)鉴定成分是重要的分析方法。然而,分离方法仍需在各个实验室之间进行标准化。其他分离方法包括静电分离,有机溶剂萃取和磁体分离。我们建议将密度分离,静电分离和有机溶剂分离相结合,以提高微塑料的分离效率,并在未来的研究中规范沉积物微塑料的分析过程。

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