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评估离子液体气相色谱固定相用于多氯联苯的分离。

Evaluation of ionic liquid gas chromatography stationary phases for the separation of polychlorinated biphenyls.

机构信息

Department of Instrumental Analysis and Environmental Chemistry, IQOG-CSIC, Juan de la Cierva, 3, 28006 Madrid, Spain.

Department of Instrumental Analysis and Environmental Chemistry, IQOG-CSIC, Juan de la Cierva, 3, 28006 Madrid, Spain.

出版信息

J Chromatogr A. 2018 Jul 20;1559:156-163. doi: 10.1016/j.chroma.2017.12.029. Epub 2017 Dec 12.

DOI:10.1016/j.chroma.2017.12.029
PMID:29248342
Abstract

The feasibility of six ionic liquid- (IL-) based stationary phases for the analysis of environmentally important polychlorinated biphenyls (PCBs) by gas chromatography combined with either electron capture micro-detector (GC-micro-ECD) or quadrupole mass spectrometry (GC-MS, for confirmation) have been evaluated. These IL-based columns showed a separation mechanism different from that observed for other commercial phases, such a low bleed high temperature 8% phenyl (equiv.) polycarborane-siloxane suggested shape-selective phase for non-ortho and mono-ortho-CBs, HT-8, or a polar poly(ethylene glycol), resulting in a different elution order of the 69 investigated PCBs. However, no all phases provided equality satisfactory resolutions for the most environmentally relevant congeners, the 12 toxic and the 7 priority PCBs. From this point of view, the best results were obtained with the SLB-IL76 and SLB-IL59 phases, which showed a number of coelutions for these specific congeners only slightly higher to that observed on HT-8. Interestingly, the SLB-IL59 phase was the only one among the evaluated phases allowing a complete resolution of the most toxic non-ortho substituted congeners # 77, 126 and 169 from all other PCBs investigated. SLB-IL76 and SLB-IL59 also demonstrated a superior chromatographic performance concerning peak symetry, retention time stability and column bleeding, compared to the other four IL-based columns evaluated. Altogether, results obtained for the analysis of pure standards illustrated the potential of, in particular, SLB-IL 59 as an alternative phase for confirmation of the identity of PCBs typically detected in environmental matrices that coeluted on conventional non-polar phases in use for this type of determination. However, the long-term stability and quantitative behaviour of these stationary phases during the analysis of real samples still need to be addressed.

摘要

已经评估了六种基于离子液体(IL)的固定相用于气相色谱法(GC)与电子俘获微检测器(GC-微-ECD)或四极杆质谱(GC-MS,用于确证)联用分析环境重要的多氯联苯(PCBs)的可行性。这些基于 IL 的柱显示出与其他商业相不同的分离机制,例如低泄漏高温 8%苯基(当量)聚硼硅氧烷建议作为非邻位和单邻位-CBs 的选择形状相,HT-8 或极性聚(乙二醇),导致 69 种研究的 PCBs 的洗脱顺序不同。然而,并非所有相都能为最具环境相关性的同系物提供相等的满意分辨率,即 12 种有毒和 7 种优先 PCBs。从这一点来看,SLB-IL76 和 SLB-IL59 相的结果最好,它们仅对这些特定同系物的几个共洗脱物的分辨率略高于 HT-8。有趣的是,SLB-IL59 相是在所评估的相中唯一能够完全分离最毒的非邻位取代同系物 #77、126 和 169 的相,而不会与其他所有研究的 PCBs 发生共洗脱。与其他四个评估的 IL 基柱相比,SLB-IL76 和 SLB-IL59 还表现出卓越的色谱性能,包括峰对称性、保留时间稳定性和柱泄漏。总的来说,对纯标准的分析结果说明了特别是 SLB-IL59 作为替代相的潜力,用于确证通常在环境基质中检测到的与在用于此类测定的常规非极性相上共洗脱的 PCBs 的身份。然而,这些固定相在分析实际样品期间的长期稳定性和定量行为仍需解决。

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