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Chemometric Exploration of APPI(+)-FT-ICR MS Data Sets for a Comprehensive Study of Aromatic Sulfur Compounds in Gas Oils

机译:APPI(+) - FT-ICR MS数据集的化学计量探索,综合研究瓦斯油中的芳烃硫化合物

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摘要

Sulfur content in gas oils is strictly regulated by legal specifications for environmental reasons. Gas oils are composed of various aromatic sulfur compounds, and some of them are known to be very refractory for sulfur removal reactions. Thus, an accurate analysis of sulfur compounds is important to find the appropriate operating conditions of the gas oil hydrotreating processes. Aromatic sulfur compounds contained in 23 gas oils samples were analyzed using APPI(+)-FT-ICR MS considering six replicates. Significant differences were spotted within several processed gas oils. A comparison of one feed and its corresponding effluents also confirmed the well-known refractory character of sulfur compounds such as polyalkylated dibenzothiophenes. To go deeper in the molecular exploration, chemometric tools were applied on this spectral data set including principal component analysis (PCA) and hierarchical cluster analysis (HCA). A unique data rearrangement was performed directly inspired on DBE vs carbon number plots that are systematically used in petroleomics studies. Then, these chemometric tools provided a successful classification of each type of gas oils. The PCA model has also been validated on mixed blends allowing us to conclude that it could be applied to unknown samples in order to identify the process used to produce them. Moreover, the exploration of the generated loadings revealed key types of molecules driving the classification such as C3-DBT which is a dibenzothiophene core with three additional carbon atoms. Indeed, it is known to remain mainly in deeply hydrotreated samples, validating previous observations regarding its potential refractory character. The ability of chemometric tools to extract specific molecular information from ultra-high resolution MS spectra reveals its huge potential for an exhaustive study of highly complex mixtures such as crude oils.
机译:气体油中的硫含量受到环境原因的法律规范严格调节。瓦斯油由各种芳族硫化合物组成,其中一些是非常难治的硫去除反应。因此,对硫化合物的准确分析对于寻找瓦斯油加氢处理方法的适当操作条件是重要的。考虑到六次重复,分析了23个汽油样品中含有23个汽油样品中的芳族硫化合物。在几种加工后的汽油中发现了显着的差异。对一个饲料及其相应的流出物的比较也证实了硫化合物如聚烷基化二苯甲烯烯烃的众所周知的耐火性特征。为了深入分子勘探,将化学计量工具应用于包括主成分分析(PCA)和分层集群分析(HCA)的该光谱数据集。在石油组织研究中直接启发了独特的数据重新排列,直接启发了在石油源研究中使用的DBE VS碳编号图。然后,这些化学计量工具提供了每种类型的汽油的成功分类。 PCA模型也曾在混合混合物上验证,允许我们得出结论,它可以应用于未知的样本,以识别用于生产它们的过程。此外,产生的负荷的探测显示了驱动诸如C3-DBT的分类的关键类型,该分子是具有三个另外的碳原子的二苯甲酸噻吩核心。实际上,已知仍然主要在深度加氢处理样品中,验证有关其潜在耐火性的观察结果。化学计量工具从超高分辨率MS光谱提取特定分子信息的能力揭示了对高度复杂混合物如原油的详尽研究的巨大潜力。

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  • 来源
    《Analytical chemistry》 |2019年第18期|共9页
  • 作者单位

    IFP Energies Nouvelles Rond Point Echangeur Solaize BP 3 F-69360 Solaize France;

    IFP Energies Nouvelles Rond Point Echangeur Solaize BP 3 F-69360 Solaize France;

    IFP Energies Nouvelles Rond Point Echangeur Solaize BP 3 F-69360 Solaize France;

    IFP Energies Nouvelles Rond Point Echangeur Solaize BP 3 F-69360 Solaize France;

    IFP Energies Nouvelles Rond Point Echangeur Solaize BP 3 F-69360 Solaize France;

    Univ Lille CNRS LASIR Lab Spectrochim Infrarouge &

    Raman UMR 8516 F-59000 Lille France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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