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Validation of microplastic sample preparation method for freshwater samples

机译:淡水样品微塑性样品制备方法的验证

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摘要

The global presence of microplastics in the environment is well documented nowadays. Studies already showed the potential risks that microplastic particles might cause to the ecosystem, while potential human health effects are currently under investigation. As one of the main inputs of these crucial researches, the concentration of microplastics in the environment should be measured precisely, confidently and monitored regularly to determine exposure levels of these pollutants. Some study highlights, that the results are usually inconsistent and uncertain, due to different sampling and sample preparation methods and the lack of quality assurance and quality control of these processes. The need for a standardized methodology is an emerging issue, as this would provide the right tools to establish a global monitoring system of microplastics. Validated sample preparation methods of water (especially freshwater) samples for microplastic analysis are rarely described. To fulfil the gap, this study aims to create and validate a special toolset and the related standard operating procedure for enhanced sample preparation. A newly developed equipment, the Small Volume Glass Separator was designed to easily isolate microplastics from freshwater samples and concentrate the treated sample in a small volume, thus reducing the brine solution use and the sample transfer steps. These features enable better prevention of contamination and making sample preparation easy, fast and cost-effective. The Small Volume Glass Separator and the related standard operation procedure was validated on model freshwater and wastewater samples with the use of fluorescently tagged microplastics and environmentally relevant microplastics (fragments, fibres). Recoveries were measured with optical microscopy under UV light and with near-infrared spectroscopy/microscopy. Recovery tests with fluorescently tagged microspheres showed that average recovery with the Small Volume Glass Separator is 12-39% higher than that of a widespread sample preparation method. This procedure was also able to recover on average 64%+/- 29% of all the environmentally relevant particles during the validation process. Results show that size and density have a great influence on potential particle loss. Recovery of smaller particles are less with both methods than that of the larger particles, but Small Volume Glass Separator yielded significantly higher recovery for more dense particles. The results of this study help to better understand particle loss during sample preparation and thus contribute to the establishment of standardised microplastic analysis processes.
机译:现在,环境中微薄的全球性存在很好地记录了。研究已经表明,微塑性颗粒可能导致生态系统的潜在风险,而目前正在调查潜在的人力健康影响。作为这些至关重要的研究的主要输入之一,应定期精确地,自信,监测环境中微塑料的浓度,以确定这些污染物的暴露水平。一些研究亮点,结果通常不一致,不确定,由于不同的采样和样品制备方法以及缺乏这些过程的质量保证和质量控制。对于标准化方法的需求是一个新兴的问题,因为这将提供建立微薄的全球监测系统的正确工具。很少描述验证的样品制备方法的水(特别是淡水)样品进行微塑性分析。为了满足差距,本研究旨在创建和验证特殊的工具集和相关标准操作程序,以获得增强的样品制备。一个新开发的设备,小体积玻璃分离器设计用于容易地将微型样品与淡水样品分离,并将处理过的样品浓缩,从而减少盐水溶液使用和样品转移步骤。这些功能可以更好地防止污染,并使样品制备容易,快速且经济高效。在型号淡水和废水样品上验证了小体积玻璃分离器和相关标准操作程序,采用荧光标记的微塑料和环境相关的微塑料(片段,纤维)。在紫外光下用光学显微镜测量回收率,近红外光谱/显微镜检查。荧光标记的微球的回收试验表明,用小体积玻璃隔膜的平均回收率高于广泛的样品制备方法的12-39%。该程序在验证过程中也能够平均恢复所有环境相关粒子的64%+ / - 29%。结果表明,尺寸和密度对潜在的粒子损失有很大影响。对于较大颗粒的方法,较小颗粒的回收较小,但对于更致密的颗粒,小体积玻璃分离器产生显着更高的恢复。该研究的结果有助于更好地了解样品制备期间的粒子损失,从而有助于建立标准化的微塑性分析过程。

著录项

  • 来源
    《Water Research》 |2021年第1期|117409.1-117409.10|共10页
  • 作者单位

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary|Hungarian Univ Agr & Life Sci Inst Aquaculture & Environm Safety 1 Pater Karoly St H-2100 Godollo Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary|Budapest Univ Technol & Econ Dept Appl Biotechnol & Food Sci NIR Spect Grp 3 Muegyet Rkp H-1111 Budapest Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary|Budapest Univ Technol & Econ Dept Appl Biotechnol & Food Sci NIR Spect Grp 3 Muegyet Rkp H-1111 Budapest Hungary;

    Hungarian Univ Agr & Life Sci Inst Aquaculture & Environm Safety 1 Pater Karoly St H-2100 Godollo Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary|Budapest Univ Technol & Econ Dept Appl Biotechnol & Food Sci NIR Spect Grp 3 Muegyet Rkp H-1111 Budapest Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary|Budapest Univ Technol & Econ Dept Appl Biotechnol & Food Sci NIR Spect Grp 3 Muegyet Rkp H-1111 Budapest Hungary;

    WESSLING Hungary Ltd 6 Anonyrnus St H-1045 Budapest Hungary|Budapest Univ Technol & Econ Dept Appl Biotechnol & Food Sci NIR Spect Grp 3 Muegyet Rkp H-1111 Budapest Hungary;

    Hungarian Univ Agr & Life Sci Inst Aquaculture & Environm Safety 1 Pater Karoly St H-2100 Godollo Hungary;

    Hungarian Univ Agr & Life Sci Inst Aquaculture & Environm Safety 1 Pater Karoly St H-2100 Godollo Hungary;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microplastics; validation; sample preparation; recovery; near-infrared spectroscopy; freshwater;

    机译:微塑料;验证;样品制备;恢复;近红外光谱;淡水;

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