Tang Ya-Ru, Yang Hui-Hsien, Urban Pawel L
Department of Applied Chemistry, National Chiao Tung University.
Mass Spectrom (Tokyo). 2017;6(Spec Iss):S0061. doi: 10.5702/massspectrometry.S0061. Epub 2017 Feb 24.
Chemical analysis of complex matrices-containing hundreds of compounds-is challenging. Two-dimensional separation techniques provide an efficient way to reduce complexity of mixtures analyzed by mass spectrometry (MS). For example, gasoline is a mixture of numerous compounds, which can be fractionated by distillation techniques. However, coupling conventional distillation with other separations as well as MS is not straightforward. We have established an automatic system for online coupling of simple microscale distillation with gas chromatography (GC) and electron ionization MS. The developed system incorporates an interface between the distillation condenser and the injector of a fused silica capillary GC column. Development of this multidimensional separation (distillation-GC-MS) was preceded by a series of preliminary off-line experiments. In the developed technique, the components with different boiling points are fractionated and instantly analyzed by GC-MS. The obtained data sets illustrate dynamics of the distillation process. An important advantage of the distillation-GC-MS technique is that raw samples can directly be analyzed without removal of the non-volatile matrix residues that could contaminate the GC injection port and the column. Distilling the samples immediately before the injection to the GC column may reduce possible matrix effects-especially in the early phase of separation, when molecules with different volatilities co-migrate. It can also reduce losses of highly volatile components (during fraction collection and transfer). The two separation steps are partly orthogonal, what can slightly increase selectivity of the entire analysis.
对含有数百种化合物的复杂基质进行化学分析具有挑战性。二维分离技术为降低质谱(MS)分析混合物的复杂性提供了一种有效方法。例如,汽油是多种化合物的混合物,可以通过蒸馏技术进行分馏。然而,将传统蒸馏与其他分离方法以及质谱联用并非易事。我们建立了一个自动系统,用于将简单的微型蒸馏与气相色谱(GC)和电子电离质谱在线联用。所开发的系统在蒸馏冷凝器和熔融石英毛细管GC柱的进样器之间设置了一个接口。在开发这种多维分离(蒸馏-GC-MS)之前进行了一系列初步离线实验。在所开发的技术中,具有不同沸点的组分被分馏并立即通过GC-MS进行分析。获得的数据集说明了蒸馏过程的动态变化。蒸馏-GC-MS技术的一个重要优点是,原始样品可以直接进行分析,而无需去除可能污染GC进样口和色谱柱的非挥发性基质残留物。在注入GC柱之前立即蒸馏样品可以减少可能的基质效应——特别是在分离的早期阶段,当具有不同挥发性的分子共同迁移时。它还可以减少高挥发性组分的损失(在馏分收集和转移过程中)。这两个分离步骤部分正交,这可以略微提高整个分析的选择性。