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采用基于液-质微萃取的发酵片剂辅助可切换溶剂法分离和定量水中的敌敌畏,结合气相色谱-火焰离子化检测。

Separation and quantification of diazinon in water samples using liquid-phase microextraction-based effervescent tablet-assisted switchable solvent method coupled to gas chromatography-flame ionization detection.

机构信息

Department of Occupational Health Engineering, School of Health, Ilam University of Medical Sciences, Ilam, Iran.

Health and Environment Research Center, Ilam University of Medical Sciences, Ilam, Iran.

出版信息

Biomed Chromatogr. 2023 Jun;37(6):e5624. doi: 10.1002/bmc.5624. Epub 2023 Apr 2.

Abstract

This study used a liquid-phase microextraction-based effervescent tablet-assisted switchable solvent method coupled to gas chromatography-flame ionization detection as an eco-efficient, convenient-to-use, cost-effective, sensitive, rapid, and efficient method for extracting, preconcentrating, and quantifying trace amounts of diazinon in river water samples. As a switchable solvent, triethylamine (TEA) was used. In situ generation of CO using effervescent tablet containing Na CO and citric acid changed the hydrophobic TEA to the hydrophilic protonated triethylamine carbonate (P-TEA-C). CO removal from the specimen solution using NaOH caused P-TEA-C to be converted into TEA and led to phase separation, during which diazinon was extracted into the TEA phase. The salting-out process was helpful in enhancing extraction efficiency. In addition, a number of significant parameters that affect extraction recovery were examined. Under optimum conditions, the limit of detection and limit of quantitation were 0.06 and 0.2 ng/ml, respectively. The extraction recovery percentage and pre-concentration factor were obtained at 95 and 190%, respectively, and the precision (inter- and intra-day, relative standard deviation %, n = 5) was <5%.

摘要

本研究采用基于液-液微萃取的腾涌片剂辅助可切换溶剂法,结合气相色谱-火焰离子化检测,建立了一种环境友好、使用方便、经济高效、灵敏、快速、有效的方法,用于提取、预浓缩和定量测定河水中的痕量敌敌畏。三乙胺(TEA)作为可切换溶剂使用。通过含有 Na2CO3 和柠檬酸的腾涌片剂原位生成 CO,将疏水性的 TEA 转变为亲水性的质子化三乙胺碳酸盐(P-TEA-C)。用 NaOH 从样品溶液中去除 CO 会导致 P-TEA-C 转化为 TEA,并发生相分离,在此过程中,敌敌畏被萃取到 TEA 相中。盐析过程有助于提高萃取效率。此外,还考察了许多影响萃取回收率的重要参数。在最佳条件下,检测限和定量限分别为 0.06 和 0.2ng/ml。萃取回收率和预浓缩因子分别为 95%和 190%,日内和日间精密度(相对标准偏差%,n=5)<5%。

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