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A new small device made of glass for separating microplastics from marine and freshwater sediments

机译:一种新型的玻璃制成的小型装置用于从海洋和淡水沉积物中分离微塑料

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摘要

Separating microplastics from marine and freshwater sediments is challenging, but necessary to determine their distribution, mass, and ecological impacts in benthic environments. Density separation is commonly used to extract microplastics from sediments by using heavy salt solutions, such as zinc chloride and sodium iodide. However, current devices/apparatus used for density separation, including glass beakers, funnels, upside-down funnel-shaped separators with a shut-off valve, etc., possess various shortcomings in terms of recovery rate, time consumption, and/or usability. In evaluating existing microplastic extraction methods using density separation, we identified the need for a device that allows rapid, simple, and efficient extraction of microplastics from a range of sediment types. We have developed a small glass separator, without a valve, taking a hint from an Utermöhl chamber. This new device is easy to clean and portable, yet enables rapid separation of microplastics from sediments. With this simple device, we recovered 94–98% of <1,000 µm microplastics (polyethylene, polypropylene, polyvinyl chloride, polyethylene terephthalate, and polystyrene). Overall, the device is efficient for various sizes, polymer types, and sediment types. Also, microplastics collected with this glass-made device remain chemically uncontaminated, and can, therefore, be used for further analysis of adsorbing contaminants and additives on/to microplastics.
机译:从海洋和淡水沉积物中分离微塑料具有挑战性,但是确定底栖环境中它们的分布,质量和生态影响是必要的。密度分离通常用于通过使用重盐溶液(例如氯化锌和碘化钠)从沉积物中提取微塑料。然而,当前用于密度分离的装置/设备,包括玻璃烧杯,漏斗,具有截止阀的倒置漏斗形分离器等,在回收率,时间消耗和/或可用性方面具有各种缺点。 。在评估使用密度分离的现有微塑料提取方法时,我们确定了需要一种能够从一系列沉积物类型中快速,简单而有效地提取微塑料的设备。我们开发了一种小型的玻璃分离器,没有阀门,可以从Utermöhl室中获得一些提示。这种新设备易于清洁和便携式,但能够从沉积物中快速分离出微量塑料。通过这种简单的设备,我们回收了94-98%的<1,000 µm微塑料(聚乙烯,聚丙烯,聚氯乙烯,聚对苯二甲酸乙二醇酯和聚苯乙烯)。总体而言,该设备对各种尺寸,聚合物类型和沉积物类型均有效。而且,用这种玻璃制造的装置收集的微塑料仍未受到化学污染,因此可用于进一步分析微塑料上的污染物和添加剂的吸附。

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