Santos Lúcia H M L M, Insa Sara, Arxé Marta, Buttiglieri Gianluigi, Rodríguez-Mozaz Sara, Barceló Damià
Catalan Institute for Water Research (ICRA-CERCA), C/ Emili Grahit 101, Girona 17003, Spain.
University of Girona, Girona, Spain.
MethodsX. 2023 Mar 21;10:102143. doi: 10.1016/j.mex.2023.102143. eCollection 2023.
This work describes the development of analytical workflows based on pyrolysis coupled with gas chromatography-mass spectrometry (Pyr-GC/MS) for the qualitative and quantitative analysis of 12 of the most common plastic polymers in environmental samples. The most suitable characteristic pyrolyzate compounds and respective indicator ions were selected for each polymer in order to obtain the most appropriate response for analytical purposes. Additionally, commercial pyrolyzates and polymers libraries were used to confirm the identity of the detected microplastics. The method was validated, showing a good linearity for all the plastic polymers (R > 0.97) and limits of detection between 0.1 (polyurethane) to 9.1 µg (polyethylene). The developed methodology was successfully applied for the analysis of plastic polymers in environmental microplastic samples collected in three Mediterranean beaches (NE Spain).•Fast and reproducible Pyr-GC/MS method for the analysis of the 12 most common plastic polymers in a single GC/MS run•Straightforward analytical workflows using pyrolyzates and polymers libraries enable a fast identification and quantification of microplastics in environmental samples.
这项工作描述了基于热解与气相色谱 - 质谱联用(Pyr - GC/MS)的分析工作流程的开发,用于对环境样品中12种最常见的塑料聚合物进行定性和定量分析。为每种聚合物选择了最合适的特征热解产物化合物和相应的指示离子,以便获得最适合分析目的的响应。此外,使用商业热解产物和聚合物库来确认检测到的微塑料的身份。该方法经过验证,对所有塑料聚合物显示出良好的线性(R > 0.97),检测限在0.1(聚氨酯)至9.1微克(聚乙烯)之间。所开发的方法成功应用于对在西班牙东北部三个地中海海滩采集的环境微塑料样品中的塑料聚合物进行分析。•快速且可重复的Pyr - GC/MS方法,可在一次GC/MS运行中分析12种最常见的塑料聚合物•使用热解产物和聚合物库的简单分析工作流程能够快速鉴定和定量环境样品中的微塑料。