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应静止而非移动:固定微塑料作为分析环形试验的新方法

What Goes Around Should Not Move Around: Immobilizing Microplastics as a New Approach for Analytical Ring Trials.

作者信息

Lenz Robin, Enders Kristina, Vizsolyi Eva Cseperke, Schumacher Mareike, Lötsch Julia, Löder Martin G J, Eder Gabriele, Voronko Yuliya, Andrade-Garda José Manuel, Muniategui-Lorenzo Soledad, Laforsch Christian, Fischer Dieter, Labrenz Matthias

机构信息

Leibniz Institute of Polymer Research Dresden, Dresden 01069, Germany.

Leibniz Institute for Baltic Sea Research Warnemünde, Rostock 18119, Germany.

出版信息

Environ Sci Technol. 2024 Dec 17;58(50):22224-22234. doi: 10.1021/acs.est.4c09427. Epub 2024 Dec 3.

Abstract

Microplastics have gained importance as pervasive environmental particulate pollutants. Their analysis demands precise quantification methods, with interlaboratory comparisons (ILCs) being crucial for performance assessment. Typically, ILCs follow a parallel design: participants each analyze their own sample specimen, often with significant variability due to challenges in producing identical subsamples of the particulate analyte, inseparably masking the relevant uncertainty sources the ILC intends to measure. We provide a filtration-immobilization approach for particles ≤100 μm, creating permanently immobilized microplastics samples. This enables serial ILC designs where participants sequentially measure the same sample. Demonstrating the concept using 5 polymers immobilized on 10 μm pore-sized silicon filters, we expose the specific measurement uncertainty being 77% lower than the total combined uncertainty observed in a parallel ILC (relative standard deviations: 5 and 23%, respectively). Particle immobilization opens further applications in sample archiving and creation of durable reference samples also for other fields of particulate matter research beyond microplastics.

摘要

微塑料作为普遍存在的环境颗粒物污染物已变得愈发重要。对其进行分析需要精确的量化方法,而实验室间比对(ILCs)对于性能评估至关重要。通常,实验室间比对采用平行设计:参与者各自分析自己的样本,由于在制备颗粒分析物的相同子样本时存在挑战,往往会有显著差异,从而不可避免地掩盖了实验室间比对想要测量的相关不确定度来源。我们为≤100μm的颗粒提供了一种过滤固定方法,可制备出永久固定的微塑料样本。这使得实验室间比对能够采用串行设计,即参与者依次测量同一样本。通过使用固定在孔径为10μm的硅滤膜上的5种聚合物来演示这一概念,我们发现特定测量不确定度比在平行实验室间比对中观察到的总合成不确定度低77%(相对标准偏差分别为5%和23%)。颗粒固定技术在样本存档以及创建耐用参考样本方面开辟了更多应用,这些应用也适用于微塑料之外的其他颗粒物研究领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e426/11656703/d54a565ea199/es4c09427_0001.jpg

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