Joint Mass Spectrometry Centre, Comprehensive Molecular Analytics, Helmholtz Zentrum München, Ingolstädter Landstraße 1, 85764 Neuherberg, Germany.
Anal Bioanal Chem. 2013 Sep;405(22):7107-16. doi: 10.1007/s00216-013-7029-4. Epub 2013 May 29.
Comprehensive multi-dimensional hyphenation of a thermogravimetry device (i.e. a thermobalance) to gas chromatography and single photon ionization-time-of-flight mass spectrometry (TG-GC×SPI-MS) has been used to investigate two crude oil samples of different geographical origin. The source of the applied vacuum ultraviolet radiation is an electron beam pumped rare gas excimer lamp (EBEL). The soft photoionization favors the formation of molecular ions. Introduction of a fast, rapidly modulated gas chromatographic separation step in comparison with solely TG-SPI-MS enables strongly enhanced detection especially with such highly complex organic matrices as crude oil. In contrast with former TG-SPI-MS measurements, separation and identification of overlying substances is possible because of different GC retention times. The specific contribution of isobaric compounds to one mass signal is determined for alkanes, naphthalenes, alkylated benzenes, and other compounds.
综合多维断词技术将热重分析仪(即热天平)与气相色谱和单光子电离飞行时间质谱(TG-GC×SPI-MS)相结合,用于研究两种不同地理来源的原油样品。所应用的真空紫外辐射源是电子束泵浦稀有气体准分子灯(EBEL)。软光电离有利于分子离子的形成。与仅 TG-SPI-MS 相比,快速、快速调制的气相色谱分离步骤的引入使得特别是对于原油等高度复杂的有机基质的检测得到了极大的增强。与以前的 TG-SPI-MS 测量相比,由于 GC 保留时间的不同,可以进行重叠物质的分离和鉴定。对于烷烃、萘、烷基化苯和其他化合物,确定了等压化合物对一个质谱信号的特定贡献。