气相色谱-真空紫外光谱法在石油和燃料分析中的应用

IF 3 Q2 CHEMISTRY, ANALYTICAL Analytical science advances Pub Date : 2023-07-11 DOI:10.1002/ansa.202300025
Alexander S. Kaplitz, Kevin A. Schug
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引用次数: 0

摘要

在现代世界,能源和燃料是至关重要的。石油和其他烃类燃料的快速表征是一个研究得很好的领域。气相色谱法传统上被用来分离不同的种类和表征燃料中的化学成分。理想情况下,每个分子都可以被分离和表征,但由于石油基质的复杂性,许多化合物被漏出。在不同的检测器的帮助下,可以获得更多的信息,但不存在一个单一的检测器,可以明确区分和识别每一个化合物。真空紫外光谱(VUV)是一种相对较新的探测器,它可以减轻其他探测器的许多局限性。基于光谱吸收,VUV检测可以提供关于不同燃料组成的定性和定量信息。它还提供了某些优点,允许消隐峰的反卷积和结构异构体之间的区分。VUV已被用于对许多不同燃料样品中的化学成分范围进行分类。本文综述了迄今为止VUV检测在石油化工分析中的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Gas chromatography—vacuum ultraviolet spectroscopy in petroleum and fuel analysis

In the modern world, energy and fuels are of utmost importance. Rapid characterization of petroleum and other hydrocarbon-based fuel is a well-researched field. Gas chromatography has traditionally been used to separate the different species and characterize the chemical content in fuels. Ideally, every molecule would be separated and characterized, but due to the complexity of the petroleum matrix, many compounds coelute. With the help of different detectors, more information can be gained, but there does not exist a single detector that can unambiguously differentiate and identify every compound. Vacuum ultraviolet spectroscopy (VUV) is a relatively new detector that can alleviate many limitations of other detectors. Based on spectroscopic absorption, VUV detection can provide qualitative and quantitative information regarding the composition of different fuels. It also provides certain advantages, allowing the deconvolution of coeluting peaks and differentiation between constitutional isomers. VUV has been used to classify the range of chemical components in many diverse fuel samples. Here, the contributions of VUV detection to petrochemical analysis to date are reviewed.

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