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基于漂浮有机滴固化的分散液液微萃取法结合气相色谱-电子捕获或质谱检测

Dispersive liquid-liquid microextraction method based on solidification of floating organic drop combined with gas chromatography with electron-capture or mass spectrometry detection.

作者信息

Leong Mei-I, Huang Shang-Da

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

J Chromatogr A. 2008 Nov 21;1211(1-2):8-12. doi: 10.1016/j.chroma.2008.09.111. Epub 2008 Oct 8.

Abstract

A simple dispersive liquid-liquid microextraction (DLLME) method based on solidification of a floating organic drop (DLLME-SFO) technique combined with gas chromatography/electron-capture detection (GC/ECD) or gas chromatography/mass spectrometry (GC/MS) has been developed. The proposed method is simple, low in cost, and of high precision. It overcomes the most important problem in DLLME, the high-toxic solvent used. Halogenated organic compounds (HOCs) in water samples were determined as the model compounds. The parameters optimized for the DLLME-SFO technique were as follows: A mixture of 0.5 mL acetone, containing 10 microL 2-dodecanol (2-DD-OH), was rapidly injected by syringe into the 5 mL water sample. After centrifugation, the fine 2-DD-OH droplets (8+/-0.5 microL) were floated at the top of the screwcap test tube. The test tube was then cooled in an ice bath. After 5 min the 2-DD-OH solvent had solidified and was then transferred into a conical vial; it melted quickly at room temperature and 3 microL (for GC/ECD) or 2 microL (for GC/MS) of it was injected into a gas chromatograph for analysis. The limit of detection (LOD) for this technique was 0.005-0.05microgL(-1) for GC/ECD and was 0.005-0.047 microgL(-1) for GC/MS, respectively. The linear range of the calibration curve of DLLME-SFO was from 0.01 to 500 microgL(-1) with a coefficient of estimation (r2)>0.996 for GC/ECD and was from 0.02 to 500 microgL(-1) with a coefficient of estimation (r2)>0.996 for GC/MS.

摘要

基于漂浮有机滴固化技术(DLLME-SFO)结合气相色谱/电子捕获检测(GC/ECD)或气相色谱/质谱(GC/MS)开发了一种简单的分散液液微萃取(DLLME)方法。该方法简单、成本低且精度高。它克服了DLLME中最重要的问题,即使用高毒性溶剂。以水样中的卤代有机化合物(HOCs)作为模型化合物进行测定。针对DLLME-SFO技术优化的参数如下:用注射器将含有10微升2-十二醇(2-DD-OH)的0.5毫升丙酮混合物快速注入5毫升水样中。离心后,细小的2-DD-OH液滴(8±0.5微升)漂浮在螺帽试管顶部。然后将试管置于冰浴中冷却。5分钟后,2-DD-OH溶剂固化,随后转移至锥形瓶中;它在室温下迅速融化,取3微升(用于GC/ECD)或2微升(用于GC/MS)注入气相色谱仪进行分析。该技术的检测限(LOD)对于GC/ECD为0.005 - 0.05微克/升,对于GC/MS分别为0.005 - 0.047微克/升。DLLME-SFO校准曲线的线性范围对于GC/ECD为0.01至500微克/升,估计系数(r2)>0.996,对于GC/MS为0.02至500微克/升,估计系数(r2)>0.996。

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