首页> 外文期刊>Journal of separation science. >Liquid-phase microextraction by solidification of floating organic microdrop and GC-MS detection of trihalomethanes in drinking water
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Liquid-phase microextraction by solidification of floating organic microdrop and GC-MS detection of trihalomethanes in drinking water

机译:悬浮有机液滴固化的液相微萃取和饮用水中三卤甲烷的GC-MS检测

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摘要

A simple and sensitive methodology based on liquid-phase microextraction (LPME) followed by GC-MS, was developed for the determination of trihalomethanes (THMs) in drinking water. A microdrop of organic solvent was floated on the surface of the aqueous sample and it was agitated for a desired time. Then, the sample vial was cooled by inserting it into an ice bath for 4 min. The solidified solvent was transferred into a suitable vial and immediately melted. The extract was directly injected into the GC. Microextraction efficiency factors were investigated and optimized: 7 mu L 1-undecanol microdrop exposed for 15 min floated on the surface of a 10.0 mL aqueous sample with the temperature of 60 degrees C containing 3 M of NaCl and stirred at 750 rpm. Under the selected conditions, enrichment factors (EFs) up to 482-fold, LOD of 0.03-0.08 mu g/L (S/N = 3) and dynamic linear ranges of 0.10-100 mu g/L were obtained. A reasonable repeatability (RSD < 8.6%, n = 8) with satisfactory linearity (r(2) >= 0.9947) of results illustrated a good performance of the present method. The protocol proved to be rapid, cost-effective, and is a green procedure for the screening purposes.
机译:建立了一种基于液相微萃取(LPME)和GC-MS的简单而灵敏的方法,用于测定饮用水中的三卤甲烷(THM)。将一滴有机溶剂漂浮在水性样品的表面上,并将其搅拌所需的时间。然后,将样品瓶插入冰浴中冷却4分钟。将固化的溶剂转移到合适的小瓶中并立即熔化。将提取物直接注入GC。研究和优化了微萃取效率因素:将暴露于15分钟的7μL 1-十一醇微滴漂浮在温度为60摄氏度,含有3 M NaCl的10.0 mL水性样品表面上,并以750 rpm搅拌。在所选条件下,获得的富集因子(EFs)高达482倍,LOD为0.03-0.08μg / L(S / N = 3),动态线性范围为0.10-100μg / L。合理的重复性(RSD <8.6%,n = 8)和令人满意的线性度(r(2)> = 0.9947)表明了本方法的良好性能。该方案被证明是快速,具有成本效益的,并且是用于筛选目的的绿色程序。

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