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使用氘代内标和热裂解-GC/MS 二聚体标记分析定量环境中的轮胎胎面颗粒。

Use of a deuterated internal standard with pyrolysis-GC/MS dimeric marker analysis to quantify tire tread particles in the environment.

机构信息

ChemRisk LLC, Pittsburgh, PA 15222, USA.

出版信息

Int J Environ Res Public Health. 2012 Nov 8;9(11):4033-55. doi: 10.3390/ijerph9114033.

Abstract

Pyrolysis(pyr)-GC/MS analysis of characteristic thermal decomposition fragments has been previously used for qualitative fingerprinting of organic sources in environmental samples. A quantitative pyr-GC/MS method based on characteristic tire polymer pyrolysis products was developed for tread particle quantification in environmental matrices including soil, sediment, and air. The feasibility of quantitative pyr-GC/MS analysis of tread was confirmed in a method evaluation study using artificial soil spiked with known amounts of cryogenically generated tread. Tread concentration determined by blinded analyses was highly correlated (r2 ≥ 0.88) with the known tread spike concentration. Two critical refinements to the initial pyrolysis protocol were identified including use of an internal standard and quantification by the dimeric markers vinylcyclohexene and dipentene, which have good specificity for rubber polymer with no other appreciable environmental sources. A novel use of deuterated internal standards of similar polymeric structure was developed to correct the variable analyte recovery caused by sample size, matrix effects, and ion source variability. The resultant quantitative pyr-GC/MS protocol is reliable and transferable between laboratories.

摘要

热解(pyr)-GC/MS 分析特征热分解碎片已被用于定性分析环境样品中的有机来源指纹。本文建立了一种基于轮胎聚合物热解特征产物的定量 pyr-GC/MS 方法,用于定量分析环境基质(包括土壤、沉积物和空气)中的胎面颗粒。通过使用冷冻生成的胎面已知量人工土壤进行方法评估研究,验证了定量 pyr-GC/MS 分析胎面的可行性。通过盲法分析确定的胎面浓度与已知的胎面浓度高度相关(r2≥0.88)。最初的热解方案有两个关键改进,包括使用内标和二聚体标记物乙烯基环己烯和二戊烯进行定量,它们对橡胶聚合物具有良好的特异性,没有其他明显的环境来源。还开发了一种新的类似聚合物结构的氘化内标物的使用方法,以校正由于样品大小、基质效应和离子源变异性引起的分析物回收率的变化。该定量 pyr-GC/MS 方法在实验室之间可靠且可转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb6a/3524611/9c2e121d093a/ijerph-09-04033-g002.jpg

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