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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Multi-capillary column high-pressure photoionization time-of-flight mass spectrometry and its application for online rapid analysis of flavor compounds
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Multi-capillary column high-pressure photoionization time-of-flight mass spectrometry and its application for online rapid analysis of flavor compounds

机译:多毛细管柱高压光离移飞行时间质谱及其在繁体中的在线快速分析应用

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摘要

High-pressure photoionization time-of-flight mass spectrometry (HPPI-TOFMS) is a versatile and highly sensitive analytical technique for online and real-time analysis of trace volatile organic compounds in complex mixtures. However, discrimination of isomers is usually a great challenge for the soft ionization method, and matrix effect is also inevitable under high pressure in the HPPI source. In this work, we describe a first attempt to develop a two-dimensional (2D) hyphenated instrument by coupling of a multi-capillary column (MCC) with a HPPI-TOFMS to overcome these problems. The capability of the MCC-HPPI-TOFMS for discrimination of isomeric compounds and elimination of the matrix effect was demonstrated by analyzing flavor mixtures. With the merits of fast separation, soft ionization and high detection sensitivity, satisfactory effects in the 2D analysis were achieved, despite the relatively low chromatographic resolution of MCC. As a result, three isomers, eucalyptol, L-menthone and linalool, in a flavor mixture were successfully categorized within 90 s, and the matrix effect caused by solvent ethanol was significantly eliminated as well. The limits of detection (LODs) down to sub-ppbv level were achieved for the investigated five flavor compounds without any enrichment process, and an excellent repeatability was obtained with the relative standard deviations (RSDs) of signal intensities <= 5%. The MCC-HPPI-TOFMS system was preliminarily applied for rapid and online analysis of flavor compounds in(t)he exhaled gas of a volunteer after mouth rinsing with a gargle product. The rapid changes of the three flavor compounds, as well as the steady endogenous metabolite acetone, in the exhaled gas were successfully determined with a time-resolution of only 1.5 min.
机译:高压光离子飞行时间谱(HPPI-TOFMS)是一种多功能和高度敏感的分析技术,用于复杂混合物中痕量挥发性有机化合物的在线和实时分析。然而,异构体的辨别通常是软离子化方法的巨大挑战,并且基质效应在HPPI源的高压下也是不可避免的。在这项工作中,我们描述了通过将多毛细列(MCC)与HPPI-TOFM耦合来开发二维(2D)连字符的仪器来克服这些问题。通过分析风味混合物对MCC-HPPI-TOFM进行异构化合物的辨别的能力和基质效应的消除。由于快速分离,软离子化和高检测灵敏度,尽管MCC的色谱分辨率相对较低,但达到了2D分析中的令人满意的效果。结果,在90秒内成功分类了三种异构体,桉树,L-Menthone和Linalool,并且也显着消除了由溶剂乙醇引起的基质效应。对研究的五种风味化合物没有任何富集过程的检测到亚pPBV水平的检测极限,并且通过信号强度的相对标准偏差(RSD)获得了优异的重复性<= 5%。初步应用MCC-HPPI-TOFMS系统,用于在口腔漂洗后志愿者呼出志愿者的风味化合物的快速和在线分析。三种风味化合物以及呼出气体中的三种风味化合物以及稳定内源代谢物丙酮的快速变化成功测定了仅1.5分钟的时间分辨率。

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