Peuravuori J, Bursáková P, Pihlaja K
Laboratory of Organic Chemistry and Chemical Biology, Department of Chemistry University of Turku, 20014 Turku, Finland.
Anal Bioanal Chem. 2007 Nov;389(5):1559-68. doi: 10.1007/s00216-007-1553-z. Epub 2007 Sep 26.
A high-performance size-exclusion chromatography (SEC) system was coupled on-line to an electrospray ionization (ESI) interface to detect gas-phase ions by an API 365 LC/MS/MS triple quadrupole analyzer. The SEC fractions of a strongly coloured freshwater solution containing dissolved organic matter-humic substances (DOM-HS) were screened both by UV(254) and by ESI mass spectrometry (ESI-MS) in the full-scan mode within the m/z range of 100-2,900 amu in negative and positive polarities. The ESI-MS spectra were also collected by direct infusion of the DOM-HS solution in both polarities. ESI-MS spectra did not primarily favour low mass compounds, and negative and positive total ion chromatograms were parallel to the SEC elution profile obtained by UV(254) detection from DOM-HS solution. The UV(254) detection overestimated the SEC portion of higher size/mass solutes and underestimated that of solutes of smaller sizes/masses as compared with the total ion chromatogram intensities in negative or positive polarities. The change of mass-weighted and number-weighted average sizes/masses (M(w) and M(n)) of different SEC fractions was fairly small, in contrast to UV(254) detection, with increasing elution volume. A reasonable explanation for the great differences between M(w) and M(n) values, obtained by UV(254) and ESI-MS detections for eight different SEC fractions, seems to be a supramolecular-type association of relatively small components through weak dispersive forces. M(n) values obtained by vapour-pressure osmometry for different SEC fractions were to some extent analogous with those of negative and positive ESI-MS. The shapes obtained by either negative or positive polarities and calculated M(w) and M(n) values indicated a close structural similarity between each SEC fraction. Positive ion and negative ion spectra of different humic fractions represented quite similar components, and there was no evidence for noteworthy occurrence of multiply charged ions being able to lower mass distributions of negative ion spectra. The effect of nitrogen on the mass spectra seemed to be unimportant, and the weak ions observed at even m/z values correspond most likely to the (13)C counterparts of the more abundant (12)C odd ions. No uncontrolled ESI fragmentation was observable and humic solutes seemed to be quite heat-resistant. Direct infusion of the untreated DOM-HS solution and statistical calculation verified that the SEC-separated different fractions really represent distinct entities of the original DOM-HS mixture. ESI-MS results support the opinion that the structural composition of humic solutes in their original combined mixture resembles supramolecular-type associations of smaller molecular size entities possessing similar structural functionalities.
一个高性能尺寸排阻色谱(SEC)系统与电喷雾电离(ESI)接口在线联用,通过API 365液相色谱/质谱/质谱三重四极杆分析仪检测气相离子。对一种含有溶解有机物 - 腐殖质(DOM - HS)的颜色较深的淡水溶液的SEC馏分,在100 - 2900原子质量单位(amu)的m/z范围内,以正负两种极性在全扫描模式下通过紫外(254)和电喷雾电离质谱(ESI - MS)进行筛选。还通过直接注入DOM - HS溶液以两种极性收集ESI - MS谱图。ESI - MS谱图并不主要偏向低质量化合物,正负总离子色谱图与通过紫外(254)检测从DOM - HS溶液获得的SEC洗脱曲线平行。与正负极性下的总离子色谱图强度相比,紫外(254)检测高估了较大尺寸/质量溶质的SEC部分,而低估了较小尺寸/质量溶质的SEC部分。与紫外(254)检测不同,随着洗脱体积增加,不同SEC馏分的质量加权和数量加权平均尺寸/质量(M(w)和M(n))变化相当小。对于通过紫外(254)和ESI - MS检测得到的八个不同SEC馏分的M(w)和M(n)值之间的巨大差异,一个合理的解释似乎是相对较小的组分通过弱分散力形成超分子型缔合。通过蒸气压渗透压法获得的不同SEC馏分的M(n)值在一定程度上与正负ESI - MS的M(n)值类似。正负极性下得到的形状以及计算出的M(w)和M(n)值表明每个SEC馏分之间结构相似性很高。不同腐殖质馏分的正离子和负离子谱图代表了相当相似的组分,没有证据表明存在能够降低负离子谱图质量分布的显著多电荷离子。氮对质谱的影响似乎不重要,在偶数m/z值处观察到的弱离子很可能对应于更丰富的(12)C奇数离子的(13)C对应物。未观察到不受控制的ESI碎片化,腐殖质溶质似乎相当耐热。直接注入未处理的DOM - HS溶液并进行统计计算验证了SEC分离的不同馏分确实代表了原始DOM - HS混合物的不同实体。ESI - MS结果支持这样一种观点,即腐殖质溶质在其原始混合状态下的结构组成类似于具有相似结构功能的较小分子尺寸实体的超分子型缔合。