Department of Environment and Health (E&H), Faculty of Sciences, Vrije Universiteit, De Boelelaan 1108, 1081 HV Amsterdam, The Netherlands.
Department of Chemistry and Pharmaceutical Sciences, Faculty of Science, Vrije Universiteit, De Boelelaan 1108, 1081 HV Amsterdam, The Netherlands.
Anal Chem. 2021 Apr 20;93(15):6158-6168. doi: 10.1021/acs.analchem.1c00049. Epub 2021 Apr 8.
This study presents, for the first time, the successful application of analyzing a whole gas chromatography (GC) chromatogram by nuclear magnetic resonance (NMR) spectroscopy using a continuous repeatable and stable ( = 280) high-resolution (HR) GC fractionation platform with a 96-well plate. Typically with GC- or liquid chromatography-mass spectrometry analysis, (isomer) standards and/or additional NMR analysis are needed to confirm the identification and/or structure of the analyte of interest. In the case of complex substances (e.g., UVCBs), isomer standards are often unavailable and NMR spectra too complex to achieve this. This proof of concept study shows that a HR GC fractionation collection platform was successfully applied to separate, purify, and enrich isomers in complex substances from a whole GC chromatogram, which would facilitate NMR analysis. As a model substance, a chlorinated paraffin (CP) mixture (>8,000 isomers) was chosen. NMR spectra were obtained from all 96 collected fractions, which provides important information for unravelling their full structure. As a proof of concept, a spectral interpretation of a few NMR spectra was made to assign sub-structures. More research is ongoing for the full characterization of CP isomers using multivariate statistical analysis. For the first time, up to only a few CP isomers per fraction were isolated from a highly complex mixture. These may be further purified and certified as standards, which are urgently needed, and can also be used for persistency, bioaccumulation, or toxicity studies.
本研究首次展示了使用具有 96 孔板的连续可重复且稳定(=280)的高分辨率(HR)GC 馏分收集平台,通过核磁共振(NMR)光谱分析整个气相色谱(GC)色谱图的成功应用。通常,使用 GC 或液质联用分析时,需要(异构体)标准品和/或额外的 NMR 分析来确认感兴趣的分析物的鉴定和/或结构。在复杂物质(例如 UVCB)的情况下,异构体标准品通常不可用,且 NMR 谱太复杂而无法实现。本概念验证研究表明,HR GC 馏分收集平台已成功应用于从整个 GC 色谱图中分离、纯化和富集复杂物质中的异构体,这将有助于 NMR 分析。以氯化石蜡(CP)混合物(>8000 个异构体)为例。从所有 96 个收集的馏分中获得了 NMR 谱,这为揭示其完整结构提供了重要信息。作为概念验证,对一些 NMR 谱进行了光谱解释,以分配亚结构。正在进行更多研究,以使用多元统计分析对 CP 异构体进行全面表征。首次从高度复杂的混合物中,每个馏分仅分离出几个 CP 异构体。这些可以进一步纯化并认证为标准品,这是急需的,也可用于持久性、生物累积或毒性研究。