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Detection of Polycyclic Aromatic Hydrocarbons in Water Samples by Annular Platform-Supported Ionic Liquid-Based Headspace Liquid-Phase Microextraction

机译:环状平台支持的离子液体基顶空液相微萃取技术检测水样中的多环芳烃

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In this paper, a new method of annular platform-supported headspace liquid-phase microextraction (LPME) was designed using ionic liquid as an extraction solvent, wherein extraction stability and efficiency were improved by adding an annular platform inside the extraction bottle. The ionic liquid 1-silicyl-3-benzylimidazolehexafluorophosphate was first synthesized and proved to be an excellent extraction solvent. Coupled with liquid chromatography, the proposed method was employed to analysis of polycyclic aromatic hydrocarbons (PAHs) in water and optimized in aspects of extraction temperature, extraction solvent volume, extraction time, pH, stirring rate, and salt effect of solution. The results indicated that this method showed good linearity (R2 > 0.995) within 0.5 µg·L−1 to 1000 µg·L−1 for PAHs. The method was more suitable for extraction of volatile PAHs, with recoveries from 65.0% to 102% and quantification limits from 0.01 to 0.05 µg·L−1. It has been successfully applied for detection of PAHs in seawater samples.
机译:本文设计了一种以离子液体为萃取溶剂的环形平台支撑顶空液相微萃取新方法,通过在萃取瓶内添加环形平台提高了萃取稳定性和效率。最初合成了离子液体1-硅烷基-3-苄基咪唑六氟磷酸盐,并被证明是一种极好的萃取溶剂。该方法与液相色谱联用,用于分析水中的多环芳烃(PAHs),并在萃取温度,萃取溶剂量,萃取时间,pH,搅拌速率和溶液的盐效应方面进行了优化。结果表明,该方法对多环芳烃具有良好的线性关系(R2> 0.995)在0.5 µg·L-1至1000 µg·L-1范围内。该方法更适用于挥发性多环芳烃的萃取,回收率为65.0%至102%,定量限为0.01至0.05µg·L-1。它已成功应用于海水样品中多环芳烃的检测。

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