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Comprehensive two-dimensional gas chromatography time-of-flight mass spectrometry with chemometric analysis.

机译:具有化学分析的全面二维气相色谱飞行时间质谱。

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摘要

Multidimensional separations, in particular Comprehensive Two-Dimensional Gas Chromatography (GC x GC), have proven to be powerful techniques that have found a niche in complex mixture analysis. Instruments of this type produce second-order data that is applicable to chemometric analysis. This combination of multidimensional separations and chemometrics results in reduced analysis times by relaxing the chromatographic resolution requirements for quantitation. By coupling GC x GC to a Time-of-Flight Mass Spectrometer (TOFMS) a truly third-order technique is produced. One separation on a GC x GC-TOFMS provides retention times on two chromatographic columns and a complete mass spectrum for each component of a mixture. Using the added selectivity of the mass spectrometer combined with chemometric techniques, overlapping components in a complex mixture can theoretically be deconvoluted using only one data set. Second-order data combined with chemometric techniques require a sample and a standard data set to deconvolute overlapping analytes.; In this dissertation, aspects of GC x GC and GC x GC-TOFMS combined with chemometrics are presented. A novel configuration of a valve-based GC x GC is proposed and tested to extend the workable temperature range of the valve-based instrument to analyze semi-volatiles. The data structure was confirmed to be applicable to chemometric analysis. This new configuration is combined with a TOFMS to produce the first valve-based GC x GC-TOFMS that is subsequently evaluated for performance. A methodology involving PARAFAC is developed to deconvolute partially overlapped peaks in this data. The chemometric analysis is shown to work for both valve-based and cryogenically modulated GC x GC-TOFMS instruments. The logistics and performance characteristics of peak deconvolution with PARAFAC are analyzed with a set of butyl benzene isomers. The reproducibility and accuracy of deconvolution is subsequently tested as a function of multivariate selectivity, which is related to chromatographic resolution and mass spectral similarity. The deconvolution results for PARAFAC are compared with those for two common GC-MS deconvolution programs. In addition, a tool to locate compounds or classes of compounds of interest based on mass spectral similarity to aid in the analysis of complex mixtures is presented.
机译:多维分离,特别是全面二维气相色谱(GC x GC),已被证明是功能强大的技术,已在复杂的混合物分析中找到了定位。这种类型的仪器产生适用于化学计量分析的二阶数据。多维分离和化学计量学的这种组合通过放宽对定量的色谱分离度要求,缩短了分析时间。通过将GC x GC与飞行时间质谱仪(TOFMS)耦合,可产生真正的三阶技术。 GC x GC-TOFMS上的一次分离可在两个色谱柱上提供保留时间,并为混合物的每种组分提供完整的质谱图。使用质谱仪增加的选择性结合化学计量技术,理论上仅使用一个数据集即可对复杂混合物中的重叠组分进行反卷积。二阶数据与化学计量学技术相结合,需要一个样品和一个标准数据集来对重叠的分析物进行反卷积。本文介绍了GC x GC和GC x GC-TOFMS结合化学计量学的各个方面。提出并测试了基于阀的GC x GC的新型配置,并扩展了基于阀的仪器的工作温度范围,以分析半挥发物。确认该数据结构适用于化学计量分析。将此新配置与TOFMS结合使用,可以生产出第一台基于阀的GC x GC-TOFMS,随后对其性能进行评估。已开发出一种涉及PARAFAC的方法,可对该数据中的部分重叠峰进行去卷积。化学计量分析显示适用于基于阀的和低温调制的GC x GC-TOFMS仪器。使用一组丁基苯异构体分析了使用PARAFAC进行峰解卷积的物流和性能特征。随后,将卷积的重现性和准确性作为多元选择性的函数进行测试,这与色谱分辨率和质谱相似性有关。将PARAFAC的解卷积结果与两个常见的GC-MS解卷积程序进行了比较。另外,提出了一种基于质谱相似性来定位目标化合物或目标化合物类别的工具,以帮助分析复杂的混合物。

著录项

  • 作者

    Sinha, Amanda E. M.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 205 p.
  • 总页数 205
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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