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用于石油组学的傅里叶变换离子回旋共振质谱仪仪器、离子化技术和数据分析方法的进展。

Developments in FT-ICR MS instrumentation, ionization techniques, and data interpretation methods for petroleomics.

机构信息

Department of Chemistry, Kyungpook National University, Daegu, 702-701, Korea.

出版信息

Mass Spectrom Rev. 2015 Mar-Apr;34(2):248-63. doi: 10.1002/mas.21438. Epub 2014 Jun 18.

Abstract

Because of the increasing importance of heavy and unconventional crude oil as an energy source, there is a growing need for petroleomics: the pursuit of more complete and detailed knowledge of the chemical compositions of crude oil. Crude oil has an extremely complex nature; hence, techniques with ultra-high resolving capabilities, such as Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS), are necessary. FT-ICR MS has been successfully applied to the study of heavy and unconventional crude oils such as bitumen and shale oil. However, the analysis of crude oil with FT-ICR MS is not trivial, and it has pushed analysis to the limits of instrumental and methodological capabilities. For example, high-resolution mass spectra of crude oils may contain over 100,000 peaks that require interpretation. To visualize large data sets more effectively, data processing methods such as Kendrick mass defect analysis and statistical analyses have been developed. The successful application of FT-ICR MS to the study of crude oil has been critically dependent on key developments in FT-ICR MS instrumentation and data processing methods. This review offers an introduction to the basic principles, FT-ICR MS instrumentation development, ionization techniques, and data interpretation methods for petroleomics and is intended for readers having no prior experience in this field of study.

摘要

由于重质和非常规原油作为能源的重要性不断增加,因此对石油组学的需求也在不断增长:即追求对原油化学成分更完整和详细的了解。原油的性质极其复杂;因此,需要具有超高分辨率能力的技术,如傅里叶变换离子回旋共振质谱(FT-ICR MS)。FT-ICR MS 已成功应用于沥青和页岩油等重质和非常规原油的研究。然而,用 FT-ICR MS 分析原油并不简单,它将分析推到了仪器和方法能力的极限。例如,原油的高分辨率质谱可能包含超过 100,000 个需要解释的峰。为了更有效地可视化大数据集,已经开发了 Kendrick 质量缺陷分析和统计分析等数据处理方法。FT-ICR MS 在原油研究中的成功应用在很大程度上取决于 FT-ICR MS 仪器和数据处理方法的关键发展。本综述介绍了石油组学的基本原理、FT-ICR MS 仪器开发、离子化技术和数据分析解释方法,旨在为该研究领域没有经验的读者提供入门知识。

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