首页> 外文期刊>Polycyclic Aromatic Compounds: The Journal of International Society for Polycyclic Aromatic Compounds >Development of an isotope-dilution gas chromatographic-mass spectrometric method for the analysis of polycyclic aromatic compounds in environmental matrices
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Development of an isotope-dilution gas chromatographic-mass spectrometric method for the analysis of polycyclic aromatic compounds in environmental matrices

机译:同位素稀释气相色谱-质谱法分析环境基质中的多环芳族化合物

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摘要

An isotope-dilution GC-MS (GC-IDMS) method for the analysis of polycyclic aromatic hydrocarbons (PAHs) in various environmental matrices,including soils,sediments and an extended application to air paniculate,has been developed.This method allows for the quantification of each target analyte against its isotope-labelled analogue as well as for the correction of analyte recovery during sample preparation and analysis.Using isotope-dilution mass spectrometric analysis,the isotope-labelled internal standards can significantly reduce systematic error (bias) from several sources including sample stability prior to analysis,analyte loss during both the extraction procedure and post-extraction sample workup and from the calibration procedure.Sample analysis and quantification was carried out using a multi-point calibration technique with continuing single-point calibration (daily single-point checks of the calibration) in order to assess daily instrumental performance;various other new quality control measures have also been employed.Faster methods of gas chromatographic analysis were evaluated using different types of GC columns,stationary phases and methods of detection.Overall,this method has improved the quality and accuracy of PAH data produced and has significantly reduced the time required for sample preparation.
机译:已开发出一种同位素稀释GC-MS(GC-IDMS)方法,用于分析土壤,沉积物等多种环境基质中的多环芳烃(PAH),并将其扩展到空气颗粒中。该方法可用于定量每种目标分析物针对其同位素标记的类似物,以及在样品制备和分析过程中校正分析物的回收率。使用同位素稀释质谱分析法,同位素标记的内标可以显着减少多种来源的系统误差(偏差)包括分析前的样品稳定性,提取过程中和萃取后样品处理过程中以及校准过程中的分析物损失。使用多点校准技术进行样品分析和定量,并进行连续的单点校准(每日单次校准点检查)以评估日常仪器性能;各种其他新质量还采用了控制措施。使用不同类型的气相色谱柱,固定相和检测方法对气相色谱分析的快速方法进行了评估。总体而言,该方法提高了所生成PAH数据的质量和准确性,并显着减少了时间样品制备所需。

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