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用于分析装在塑料瓶中的饮料中微塑料的智能过滤器。

Smart filters for the analysis of microplastic in beverages filled in plastic bottles.

机构信息

Waste Water Analysis, Monitoring Methods, Umweltbundesamt (UBA), Berlin, Germany.

Physical and Chemical Analysis of Polymers, Bundesanstalt für materialforschung und prüfung (BAM), Berlin, Germany.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2021 Apr;38(4):691-700. doi: 10.1080/19440049.2021.1889042. Epub 2021 Mar 11.

Abstract

The occurrence of microplastic (MP) in food products, such as beverages in plastic bottles, is of high public concern. Existing analytical methods focus on the determination of particle numbers, requiring elaborate sampling tools, laboratory infrastructure and generally time-consuming imaging detection methods. A comprehensive routine analysis of MP in food products is still not possible. In the present work, we present the development of a smart filter crucible as sampling and detection tool. After filtration and drying of the filtered-off solids, a direct determination of the MP mass content from the crucible sample can be done by thermal extraction desorption gas chromatography mass spectroscopy (TED-GC/MS). The new filter crucible allows a filtration of MP down to particle sizes of 5 µm. We determined MP contents below 0.01 µg/L up to 2 µg/L, depending on beverages bottle type. This may be directly related to the bottle type, especially the quality of the plastic material of the screw cap. Dependent on the plastic material, particle formation increases due to opening and closing operations during the use phase. However, we have also found that some individual determinations of samples were subjected to high errors due to random events. A conclusive quantitative evaluation of the products is therefore not possible at present.

摘要

微塑料(MP)在食品产品中的出现,如塑料瓶中的饮料,引起了公众的高度关注。现有的分析方法主要集中在颗粒数量的测定上,需要复杂的采样工具、实验室基础设施和通常耗时的成像检测方法。目前还不可能对食品中的 MP 进行全面的常规分析。在本工作中,我们提出了一种智能过滤坩埚作为采样和检测工具。过滤后的固体经过滤和干燥后,可通过热萃取解吸气相色谱质谱法(TED-GC/MS)直接从坩埚样品中测定 MP 的质量含量。新型过滤坩埚可将 MP 过滤至 5 µm 以下的粒径。我们测定了 0.01 µg/L 以下至 2 µg/L 的 MP 含量,具体取决于饮料瓶的类型。这可能与瓶型直接相关,特别是螺旋盖的塑料材料质量有关。由于使用过程中的开启和关闭操作,某些塑料材料会导致颗粒形成增加。然而,我们还发现,由于随机事件,一些样品的个别测定结果存在较大误差。因此,目前无法对产品进行结论性的定量评估。

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