首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Gas purge microsyringe extraction for quantitative direct gas chromatographic-mass spectrometric analysis of volatile and semivolatile chemicals
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Gas purge microsyringe extraction for quantitative direct gas chromatographic-mass spectrometric analysis of volatile and semivolatile chemicals

机译:吹扫微注射器萃取用于挥发性和半挥发性化学物质的定量直接气相色谱-质谱分析

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摘要

Sample pretreatment before chromatographic analysis is the most time consuming and error prone part of analytical procedures, yet it is a key factor in the final success of the analysis. A quantitative and fast liquid phase microextraction technique termed as gas purge microsyringe extraction (GP-MSE) has been developed for simultaneous direct gas chromatography-mass spectrometry (GC-MS) analysis of volatile and semivolatile chemicals without cleanup process. Use of a gas flowing system, temperature control and a conventional microsyringe greatly increased the surface area of the liquid phase micro solvent, and led to quantitative recoveries of both volatile and semivolatile chemicals within short extraction time of only 2. min. Recoveries of polycyclic aromatic hydrocarbons (PAHs), organochlorine pesticides (OCPs) and alkylphenols (APs) determined were 85-107%, and reproducibility was between 2.8% and 8.5%. In particular, the technique shows high sensitivity for semivolatile chemicals which is difficult to achieve in other sample pretreatment techniques such as headspace-liquid phase microextraction. The variables affecting extraction efficiency such as gas flow rate, extraction time, extracting solvent type, temperature of sample and extracting solvent were investigated. Finally, the technique was evaluated to determine PAHs, APs and OCPs from plant and soil samples. The experimental results demonstrated that the technique is economic, sensitive to both volatile and semivolatile chemicals, is fast, simple to operate, and allows quantitative extraction. On-site monitoring of volatile and semivolatile chemicals is now possible using this technique due to the simplification and speed of sample treatment.
机译:色谱分析之前的样品预处理是分析过程中最耗时且容易出错的部分,但这是分析最终成功的关键因素。已开发出一种称为气相吹扫微注射器萃取(GP-MSE)的定量快速液相微萃取技术,用于同时进行挥发性和半挥发性化学物质的直接气相色谱-质谱(GC-MS)分析,无需净化过程。使用气体流动系统,温度控制和常规的微注射器极大地增加了液相微溶剂的表面积,并导致在仅2分钟的短时间内即可定量回收挥发性和半挥发性化学物质。测定的多环芳烃(PAH),有机氯农药(OCP)和烷基酚(AP)的回收率为85-107%,重现性为2.8%至8.5%。特别地,该技术显示出对半挥发性化学物质的高灵敏度,这在其他样品预处理技术(如顶空液相微萃取)中很难实现。研究了影响萃取效率的变量,例如气体流速,萃取时间,萃取溶剂类型,样品温度和萃取溶剂。最后,对该技术进行了评估,以确定植物和土壤样品中的PAH,AP和OCP。实验结果表明,该技术经济,对挥发性和半挥发性化学物质均敏感,快速,易于操作并且可以定量提取。由于简化了样品处理并提高了处理速度,现在可以使用这种技术对挥发性和半挥发性化学物质进行现场监控。

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