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Quantification of vehicle paint components containing polystyrene using pyrolysis-gas chromatography/mass spectrometry

机译:热解-气相色谱/质谱法定量分析含聚苯乙烯的汽车涂料成分

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Qualitative analysis of complicated paint samples from traffic accident cases can usually be dealt with by Fourier Transform Infrared Spectroscopy (FTIR) or Pyrolysis-Gas Chromatography/Mass Spectrometry (Py-GC/MS); however, the collection of quantitative evidence is still difficult, especially for solid and cured polymers, due to multiple factors involved. Polystyrene, one of the commonly used ingredients in paint recipes, is quantified by pyrolysis-GC/MS which offers satisfactory performance with low sample consumption and high sensitivity. Not only are the characteristics of PS during the various pyrolyzing process discussed, but also the matrix effects on quantification are evaluated for better identification of paint sources. We design a method based on the unique pyrolysis characteristics of polystyrene, in which styrene is the major pyrolysis product at nearly 750 °C, to identify and quantify paint samples of different sources with limited quantities and high similarities. Validation of this method is accomplished by joining international proficiency tests twice successfully meeting the requirements, indicating that the method is useful and feasible in examining vehicle paint traces with the convenience and practicability of combining with other analytical techniques for forensic purposes...
机译:通常可以通过傅立叶变换红外光谱(FTIR)或热解气相色谱/质谱(Py-GC / MS)对交通事故案例中的复杂油漆样品进行定性分析;但是,由于涉及多个因素,因此收集定量证据仍然很困难,尤其是对于固体和固化聚合物。聚苯乙烯是油漆配方中常用的成分之一,可通过热解-GC / MS定量分析,该方法可提供令人满意的性能,同时样品消耗量低且灵敏度高。不仅讨论了各种热解过程中PS的特性,而且还评估了基质对定量的影响,以便更好地识别涂料来源。我们设计了一种基于聚苯乙烯独特的热解特性的方法,其中苯乙烯是将近750°C的主要热解产物,用于鉴定和量化数量有限且相似度很高的不同来源的油漆样品。通过两次成功达到要求的国际能力验证参加该方法的验证,表明该方法在检查车辆油漆痕迹方面是有用且可行的,并且与其他分析技术相结合可方便实用,可用于法医目的。

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