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Positive-ion electrospray ionisation mass spectrometry of acetone- and acetonitrile-soluble fractions of coal-derived liquids

机译:煤制液体中丙酮和乙腈可溶级分的正离子电喷雾电离质谱

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摘要

The acetone-soluble fraction of a coal tar pitch has been examined using positive ion electrospray ionisation (ESI), by infusion into the ESI stream. The acetonitrile-soluble fractions of a coal tar pitch, a coal digest and a low temperature coal tar have also been studied by high performance liquid chromatography/ESI mass spectrometry. In contrast to positive-ion ESI of proteins, which gives rise to multiply charged ions, this application to fossil fuels, petroleum asphaltenes and humic acids, appears to only give singly-charged ions. The major components of these samples, polycyclic aromatics that could be detected by gas chromatography/mass spectrometry, formed no ions in positive-ion ESI. The only ions detected were formed from azaarenes. Ions up to only m/z 500 or so were detected, although these fractions are known to contain higher-mass species, up to at least several thousand mass units. Fractions of the three samples [coal tar pitch, coal digest and a low temperature coal tar], insoluble in acetonitrile gave no satisfactory ESI spectra. The nitrogen contents of the fractions indicate that azaarenes become more prominent with increasing mass. However, these larger species could not be observed in the ESI mass spectra. Only some of the minor components of these samples could be observed. Size-exclusion chromatography and matrix-assisted laser desorption/ionisation mass spectrometry both indicate considerably larger molecules than those found by ESI-MS.
机译:通过使用正离子电喷雾电离(ESI),通过注入到ESI物流中来检查煤焦油沥青中的丙酮可溶级分。还通过高效液相色谱/ ESI质谱法研究了煤焦油沥青,煤消化物和低温煤焦油的乙腈可溶级分。与蛋白质的正离子ESI(会产生多电荷离子)相反,这种在化石燃料,石油沥青质和腐殖酸上的应用似乎只能产生单电荷离子。这些样品的主要成分,可以通过气相色谱/质谱法检测到的多环芳烃,在正离子ESI中没有形成离子。唯一检测到的离子是由氮杂芳烃形成的。尽管仅检测到m / z 500左右的离子,但已知这些馏分包含更高质量的物种,至多为数千质量单位。不溶于乙腈的三个样品的馏分(煤焦油沥青,煤分解物和低温煤焦油)未提供令人满意的ESI光谱。馏分中的氮含量表明,氮杂芳烃随着质量的增加而变得更加突出。但是,在ESI质谱图中无法观察到这些较大的物种。只能观察到这些样品中的一些次要成分。尺寸排阻色谱法和基质辅助激光解吸/电离质谱法均表明分子比通过ESI-MS发现的分子大得多。

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