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采用尺寸排阻色谱-电喷雾电离四极杆飞行时间质谱法测定低分子量富里酸的分子式和结构规律

Determination of molecular formulas and structural regularities of low molecular weight fulvic acids by size-exclusion chromatography with electrospray ionization quadrupole time-of-flight mass spectrometry.

作者信息

These Anja, Winkler Marcus, Thomas Christoph, Reemtsma Thorsten

机构信息

Department of Water Quality Control, Technical University of Berlin, Sekr KF4, Strasse des 17 Juni 135, Germany.

出版信息

Rapid Commun Mass Spectrom. 2004;18(16):1777-86. doi: 10.1002/rcm.1550.

Abstract

Size-exclusion chromatography was coupled to a quadrupole time-of-flight mass spectrometer using electrospray ionization in the negative ion mode to analyze Suwannee River fulvic acid. About 220 exact masses of low molecular weight fulvic acids (FAs) were measured in the range from m/z 190 to 350, and molecular formulas could be deduced for all these molecular masses. All molecular formulas can be described by the superimposition of three homologous series in the FA mixture: (a) a series of hydrogen homologs constituted of five to six members for a given number of carbons and oxygens; (b) a series of alkyl chain homologs with stepwise addition of one methylene group; and (c) isobaric compounds that differ by the formal replacement of an oxygen atom by a methane group. Product ion spectra of the FA species reflect the repeated parallel losses of carbon dioxide and water. The minimum number of carboxylate groups and the maximum number of hydroxy moieties could be determined from the product ion spectra. Furthermore, it was obvious that the structural differences between homologs in the three series are located in the carbon backbone of the FA rather than in its extremities that are expelled as neutral fragments. These structural regularities reduce the complexity of FA mixtures to a certain set of yet unknown basic structures.

摘要

尺寸排阻色谱与四极杆飞行时间质谱联用,采用负离子模式下的电喷雾电离来分析苏万尼河富里酸。在质荷比190至350范围内测定了约220个低分子量富里酸(FAs)的精确质量,并可推导所有这些分子量的分子式。所有分子式都可以通过富里酸混合物中三个同系物系列的叠加来描述:(a)对于给定数量的碳和氧,由五到六个成员组成的一系列氢同系物;(b)一系列逐步添加一个亚甲基的烷基链同系物;以及(c)通过甲烷基团正式取代氧原子而不同的等压化合物。富里酸物种的产物离子光谱反映了二氧化碳和水的重复平行损失。可从产物离子光谱确定羧基的最小数量和羟基部分的最大数量。此外,很明显,三个系列中同系物之间的结构差异位于富里酸的碳骨架中,而不是位于作为中性片段排出的末端。这些结构规律将富里酸混合物的复杂性降低到一组尚不清楚的基本结构。

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