Masucci Claudia, Nagornov Konstantin O, Kozhinov Anton N, Kraft Kevin, Tsybin Yury O, Bleiner Davide
Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600, Dübendorf, Switzerland.
Department of Chemistry, University of Zürich, Winterthurerstrasse 190, 8057, Zurich, Switzerland.
Anal Bioanal Chem. 2024 Sep;416(23):5133-5144. doi: 10.1007/s00216-024-05450-2. Epub 2024 Aug 13.
Chlorinated paraffins (CP) are complex molecular mixtures occurring in a wide range of isomers and homologs of environmental hazards, whose analytical complexity demand advanced mass spectrometry (MS) methods for their characterization. The reported formation of chlorinated olefins (COs) and other transformation products during CP biotransformation and degradation can alter the MS analysis, increasing the high resolution required to distinguish CPs from their degradation products. An advanced setup hyphenating a plasma ionization source and an external high-performance data acquisition and processing system to the legacy hybrid LTQ Orbitrap XL mass spectrometer is reported. First, the study demonstrated the versatility of a liquid sampling atmospheric pressure glow discharge, as a soft ionization technique, for CP analysis. Second, enhanced resolution and sensitivity provided by the absorption mode Fourier transform spectral representation on this legacy mass spectrometer are shown. The developed Orbitrap-based platform allowed the detection of new isotopic clusters and CPs and COs to be distinguished at medium resolution (setting 30,000 at m/z 400, ~ 400 ms transients), and even chlorinated di-olefins (CdiOs) at higher resolution (setting 100,000 at m/z 400, ~ 1500 ms transients). Overall, such proof-of-principle instrumental improvements are promising for environmental and analytical research in the field of CP analysis.
氯化石蜡(CP)是一种复杂的分子混合物,存在于多种异构体和同系物中,属于环境危害物质,其分析的复杂性需要先进的质谱(MS)方法来进行表征。据报道,在CP生物转化和降解过程中形成的氯化烯烃(CO)和其他转化产物会改变质谱分析,增加了区分CP及其降解产物所需的高分辨率要求。本文报道了一种先进的装置,它将等离子体电离源和外部高性能数据采集与处理系统与传统的混合LTQ Orbitrap XL质谱仪联用。首先,该研究证明了液体采样大气压辉光放电作为一种软电离技术在CP分析中的通用性。其次,展示了这种传统质谱仪上吸收模式傅里叶变换光谱表示所提供的增强分辨率和灵敏度。所开发的基于Orbitrap的平台能够在中等分辨率(m/z 400时设置为30,000,400 ms瞬态)下检测新的同位素簇,并区分CP和CO,甚至在更高分辨率(m/z 400时设置为100,000,1500 ms瞬态)下检测氯化二烯烃(CdiO)。总体而言,这种原理验证性的仪器改进对于CP分析领域的环境和分析研究具有广阔前景。