首页> 外文期刊>Analytical chemistry >Two- and Three-Dimensional van Krevelen Diagrams: A Graphical Analysis Complementary to the Kendrick Mass Plot for Sorting Elemental Compositions of Complex Organic Mixtures Based on Ultrahigh-Resolution Broadband Fourier Transform Ion Cyclotron Reso
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Two- and Three-Dimensional van Krevelen Diagrams: A Graphical Analysis Complementary to the Kendrick Mass Plot for Sorting Elemental Compositions of Complex Organic Mixtures Based on Ultrahigh-Resolution Broadband Fourier Transform Ion Cyclotron Reso

机译:二维和三维van Krevelen图:基于超高分辨率宽带傅里叶变换离子回旋加速器对复杂有机混合物的元素组成进行分类的Kendrick质量图的图形分析的补充

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Ultrahigh-resolution electrospray ionization Fourier transform ion cyclotron resonance mass spectrometry has resolved and identified the elemental compositions of over 10 000 organic constituents of coal and petroleum crude oil. A plot of Kendrick mass defect versus Kendrick nominal mass sorts compounds into homologous series according to compound class (i.e., numbers of N, O, and S heteroatoms), type (number of rings plus double bonds), and degree of alkylation (number of CH_(2) groups), to yield unique elemental assignments from ultrahigh-resolution mass measurements in the 200-900 Da range. Interpretation of such a vast compilation requires a simple (preferably graphical) means to differentiate between complex organic mixtures of different origin or processing. In an extension of the recently revived van Krevelen plot, each elemental composition is projected onto two or three axes according to its H/C, O/C, and/or N/C atomic ratios. The H/C ratio separates compounds according to degree of saturation, whereas O/C or N/C ratios separate according to O and N classes. We show that the three-dimensional van Krevelen diagram can completely separate different classes in pyridine-extracted coal or petroleum samples and can also graphically distinguish fossil fuels according to their nature (coal vs petroleum), maturation (coals of different rank), and processing (the same coal at two stages of liquefaction). The van Krevelen diagram thus appears well suited to amplifying and exposing compositional differences within and between complex organic mixtures.
机译:超高分辨率电喷雾电离傅立叶变换离子回旋共振质谱已解决并鉴定了煤和石油原油中1万多种有机成分的元素组成。 Kendrick质量缺陷与Kendrick标称质量的关系图根据化合物类别(即N,O和S杂原子数),类型(环数和双键数)和烷基化程度( CH_(2)组),以从200-900 Da范围内的超高分辨率质量测量中得出独特的元素分配。对如此庞大的汇编的解释需要一种简单的方法(最好是图形方法)来区分不同来源或工艺的复杂有机混合物。在最近恢复的van Krevelen图的扩展中,每个元素组成都根据其H / C,O / C和/或N / C原子比投影到两个或三个轴上。 H / C比根据饱和度分离化合物,而O / C或N / C比根据O和N类分离。我们显示了三维范克雷韦伦图可以完全分离吡啶提取的煤或石油样品中的不同类别,并且还可以根据其性质(煤还是石油),成熟度(不同等级的煤)和加工过程以图形方式区分化石燃料。 (相同的煤在液化的两个阶段)。 van Krevelen图因此看起来非常适合放大和暴露复杂有机混合物内部和之间的组成差异。

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