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大湖鱼类中毒杀芬的分析:气相色谱 - 电子轰击串联质谱法(GC - EI/MS/MS)与气相色谱 - 电子捕获负电离质谱法(GC - ECNI - MS)的比较、采用单一组分标准品和工业混合物对毒杀芬进行定量分析

Toxaphene analysis in Great Lakes fish: a comparison of GC-EI/MS/MS and GC-ECNI-MS, individual congener standard and technical mixture for quantification of toxaphene.

作者信息

Xia Xiaoyan, Crimmins Bernard S, Hopke Philip K, Pagano James J, Milligan Michael S, Holsen Thomas M

机构信息

Center for Air Resource Engineering and Science, Clarkson University, Potsdam, NY 13699, USA.

出版信息

Anal Bioanal Chem. 2009 Sep;395(2):457-63. doi: 10.1007/s00216-009-2988-1. Epub 2009 Jul 31.

DOI:10.1007/s00216-009-2988-1
PMID:19641902
Abstract

Toxaphene is considered to be a problematic organochlorine pollutant because of its bioaccumulation potential and persistence in aquatic environments. In this study, whole lake trout and walleye composites were used to evaluate two analytical techniques for total toxaphene and selected congener analysis. The efficacy of using gas chromatography electron ionization tandem mass spectrometry (GC-EI/MS/MS) and electron capture negative ionization mass spectrometry (GC-ECNI-MS) were compared. Although the sensitivity using GC-ECNI-MS was approximately five times greater than GC-EI/MS/MS, the latter provided more consistent inter-Parlar relative response factors (RRF). When using technical calibration mixtures, these results suggest a more accurate total toxaphene measurement was obtained using the GC-EI/MS/MS method. Total toxaphene concentrations in lake trout composites from both methods were highly correlated (R(2) = 0.985) with the MS/MS concentrations approximately half of those determined by ECNI, suggesting systematic high bias in toxaphene concentrations when measured using GC-ECNI.

摘要

毒杀芬因其生物累积潜力以及在水生环境中的持久性,被视为一种有问题的有机氯污染物。在本研究中,使用全湖鳟鱼和大眼狮鲈混合物来评估两种分析总毒杀芬及选定同系物的分析技术。比较了使用气相色谱电子电离串联质谱法(GC-EI/MS/MS)和电子捕获负离子化质谱法(GC-ECNI-MS)的效果。尽管使用GC-ECNI-MS的灵敏度约为GC-EI/MS/MS的五倍,但后者提供了更一致的不同实验室间相对响应因子(RRF)。当使用工业校准混合物时,这些结果表明使用GC-EI/MS/MS方法能获得更准确的总毒杀芬测量值。两种方法测定的湖鳟鱼混合物中的总毒杀芬浓度高度相关(R² = 0.985),MS/MS法测定的浓度约为ECNI法测定值的一半,这表明使用GC-ECNI法测量时毒杀芬浓度存在系统性的高偏差。

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