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Characterization of a crude oil weathering series by ultrahigh-resolution mass spectrometry using multiple ionization modes

机译:使用多种电离模式通过超高分辨率质谱对原油风化系列进行表征

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摘要

Accidental crude oil releases, such as the Deepwater Horizon {DWH) accident are always a potential threat to pristine marine ecosystems. Since the toxicity of crude oil heavily depends on its variable composition, the comprehensive characterization of crude oil compounds as a function of weathering is an important area of research. Traditional gas chromatography-based characterization presents significant limitations, and the use of ultrahigh-resolution mass spectrometric (UHRMS) techniques (that allow for the assignment of molecular formulae) has been shown to be better equipped to address the complex nature of crude oils. This study used an Orbitrap Q Exactive mass spectrometer operated at a resolving power of 140,000 FWHM with both electrospray ionization (ESI) and atmospheric pressure photoionization (APPI) sources, in order to characterize a crude oil weathering series of the Macondo oil released during the DWH incident (the source oil, two differently weathered surface slicks, and a beached residue). Preliminary gas chromatography mass spectrometry (GC-MS) and gas chromatography flame ionization detection (GC-FID) results suggested that the four oils comprised a true weathering series (including biodegradation and photodegradation in addition to other well-known processes such as dissolution and evaporation). UHRMS results showed a clear increase in oxygenated compounds with weathering, and further suggested a significant gain of acidic compounds, as well as the transformation of phenols to ketonic and quinonic compounds with weathering. A complementary study on a weathered oil sample amended with selected model compounds contributed additional insight into the functional group types that are accessible in each ionization technique.
机译:诸如深水地平线(DWH)事故之类的意外原油泄漏始终是对原始海洋生态系统的潜在威胁。由于原油的毒性在很大程度上取决于其可变的成分,因此根据风化作用对原油化合物进行全面表征是一个重要的研究领域。传统的基于气相色谱的表征存在明显的局限性,超高分辨率质谱(UHRMS)技术(允许分配分子式)已被证明可以更好地解决原油的复杂性。这项研究使用了Orbitrap Q Exactive质谱仪,其分辨力为140,000 FWHM,同时具有电喷雾电离(ESI)和大气压光电离(APPI)源,以表征DWH期间释放的Macondo油的原油风化系列事故(源油,两个不同风化的表面浮油和残留的滩涂物)。初步气相色谱质谱(GC-MS)和气相色谱火焰离子化检测(GC-FID)结果表明,这四种油具有真正的耐候性系列(包括生物降解和光降解)以及其他众所周知的过程(例如溶解和蒸发) )。 UHRMS结果显示,随着风化,含氧化合物明显增加,并且进一步表明酸性化合物的显着增加,以及随着风化,酚类转化为酮和奎宁化合物。对风化油样品进行了补充研究后,用选定的模型化合物对其进行了修正,从而进一步洞察了每种电离技术可使用的官能团类型。

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  • 来源
    《The Science of the Total Environment》 |2016年第1期|600-610|共11页
  • 作者单位

    Department of Chemistry & Biochemistry, (SERC), Florida International University, 3000 NE 151 Street, Biscayne Bay Campus, North Miami, Florida 33181, USA Southeast Environmental Research Center (SERC), Florida International University, 3000 NE 151 Street Biscayne Bay Campus, North Miami Florida 33181, USA;

    Department of Chemistry & Biochemistry, (SERC), Florida International University, 3000 NE 151 Street, Biscayne Bay Campus, North Miami, Florida 33181, USA Southeast Environmental Research Center (SERC), Florida International University, 3000 NE 151 Street Biscayne Bay Campus, North Miami Florida 33181, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Petroleum; Deepwater Horizon; Weathering series; Ultrahigh-resolution mass spectrometry; Oxygenated hydrocarbons;

    机译:石油;深水地平线;风化系列;超高分辨率质谱;含氧烃;

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