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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Ionic liquid-based single drop microextraction and room-temperature gas chromatography for on-site ion mobility spectrometric analysis
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Ionic liquid-based single drop microextraction and room-temperature gas chromatography for on-site ion mobility spectrometric analysis

机译:基于离子液体的单滴微萃取和室温气相色谱仪,用于现场离子迁移光谱分析

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摘要

The combination of ionic liquid-based headspace single drop microextraction (IL-HS-SDME) and room-temperature gas chromatography/ion mobility spectrometry (RTGC-IMS) is presented for the first time using the direct determination of trihalomethanes in waters as model analytical problem. The ionic liquid allows the transference of the analytes from the sample to the analytical system, at. the same time that it provides an increase of the sensitivity and selectivity of the determination. An injection unit has been designed to permit the efficient volatilization of the analytes at room temperature and to avoid the entering of IL in the system. The direct combination allows the determination of the halocompounds in a rapid and simple way taking advance of their characteristic IMS spectra. The limits of the detection range between 0.1 ng mL~(-1) (bromoform) and 0.9 ng mL~(-1) (chloroform), the reproducibility of the system being better than 7.1%(RSD). The proposed coupling opens up a new horizon in IMS-based applications.
机译:首次使用直接测定水中的三卤甲烷作为模型分析物,首次提出了基于离子液体的顶空单滴微萃取(IL-HS-SDME)和室温气相色谱/离子迁移谱(RTGC-IMS)的组合问题。离子液体允许分析物在室温下从样品转移到分析系统。同时提高了测定的灵敏度和选择性。设计了一个进样单元,可以在室温下有效地蒸发分析物,并避免IL进入系统。直接结合可以利用卤代化合物的特征IMS谱图快速,简便地测定卤代化合物。检测范围在0.1 ng mL〜(-1)(溴仿)和0.9 ng mL〜(-1)(氯仿)之间,系统的重现性优于7.1%(RSD)。提议的耦合为基于IMS的应用程序开辟了新的视野。

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