Department of the Built Environment, Aalborg University, Aalborg, Denmark.
Department of Chemistry and Industrial Chemistry, University of Pisa, Pisa, Italy; National Interuniversity Consortium of Materials Science and Technology, Italy.
Water Res. 2024 Sep 1;261:122055. doi: 10.1016/j.watres.2024.122055. Epub 2024 Jul 6.
Matrix interference and recovery when using pyrolysis gas chromatography (Py-GC-MS) to analyze wastewater for polystyrene (PS) and polypropylene (PP) microplastics (MP) was studied. Raw wastewater underwent a sample preparation train commonly applied for such matrix. The train consisted of six discrete steps to reduce the organic matter content without affecting MP in the sample. One large wastewater sample was collected, homogenized, and subdivided into 21 subsamples. Three samples were analyzed without further sample preparation. The remaining samples were divided in sets of three, and each set underwent an increasing number of steps of the procedure, up to the last set, which underwent the full treatment. The matrix effect on the determination of PS and PP was statistically evaluated by comparing in-matrix and external calibration curves at each step. Recovery of MP was assessed after each step by adding deuterated PS to the samples. A main finding was that there was no significant matrix effect for these polymers throughout the preparation train, suggesting that matrix components did not interfere with the analytical method. However, a significant loss of polymer mass was found between the steps, which may result in MPs falling below detection limits. Therefore, Py-GC-MS could be used for MP quantification before analysis by other techniques which require more extensive matrix removal. A downside of this approach is that analyzing such samples without matrix reduction will increase the need for instrumental maintenance.
研究了在使用热裂解气相色谱-质谱法(Py-GC-MS)分析废水中聚苯乙烯(PS)和聚丙烯(PP)微塑料(MP)时的基质干扰和恢复情况。原始废水经过常用于此类基质的样品制备流程。该流程由六个离散步骤组成,旨在减少有机物含量,而不影响样品中的 MP。采集了一个大型废水样本,进行了均质化处理,并将其分为 21 个亚样本。有三个样本未经进一步的样品制备就进行了分析。其余的样本分为三组,每组都进行了该程序的多个步骤,直到最后一组完成了完整的处理。通过在每个步骤比较基质内和外部校准曲线,统计评估了基质对 PS 和 PP 测定的影响。在每个步骤后,通过向样品中添加氘化 PS 来评估 MP 的回收率。主要发现是,在整个制备过程中,这些聚合物没有明显的基质效应,这表明基质成分不会干扰分析方法。然而,在步骤之间发现聚合物质量有显著损失,这可能导致 MPs 低于检测限。因此,在使用其他需要更广泛基质去除的技术进行分析之前,Py-GC-MS 可用于 MP 定量。这种方法的一个缺点是,如果不进行基质减少就分析此类样品,将增加对仪器维护的需求。