首页> 外文期刊>Environmental Science & Technology >Molecular-Level Characterization of Oil-Soluble Ketone/Aldehyde Photo-Oxidation Products by Fourier Transform Ion Cyclotron Resonance Mass Spectrometry Reveals Similarity Between Microcosm and Field Samples
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Molecular-Level Characterization of Oil-Soluble Ketone/Aldehyde Photo-Oxidation Products by Fourier Transform Ion Cyclotron Resonance Mass Spectrometry Reveals Similarity Between Microcosm and Field Samples

机译:通过傅里叶变换离子回旋谐振质谱法的油溶性酮/醛光氧化产物的分子水平表征揭示了微观和野外样品之间的相似性

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摘要

We present a solid-phase extraction method followed by derivatization with a charged tag to characterize ketone/aldehyde-containing functionalities (proposed photo-oxidation transformation products) in weathered petroleum by Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS). A photo-oxidation-only microcosm mimics solar irradiation of crude oil in the environment after an oil spill. A biodegradation-only microcosm enables independent determination as to which of the two weathering processes contributes to the formation of oil-soluble ketone/aldehyde species. Results confirm that photo-oxidation produces ketones/aldehydes in crude oil when exposed to solar radiation in laboratory experiments, whereas biodegraded oil samples do not produce ketone/aldehyde compounds. Field samples collected after different time periods and locations after the Deepwater Horizon oil spill are also shown to contain ketones/aldehydes, and comparison of field and photo-oxidation-only microcosm transformation products reveal remarkable similarity. These results indicate that the photo-oxidation microcosm comprehensively represents ketone/aldehyde-formation products in the field, whereas the biodegradation microcosm does not. Solid-phase extraction coupled with derivatization leads to selective identification of ketone/aldehyde species by MS. Although improved dynamic range and slightly reduced mass spectral complexity is achieved by separation/derivatization, comprehensive molecular characterization still requires mass resolving power and mass accuracy provided by FT-ICR MS.
机译:我们介绍了一种固相提取方法,然后用带电标签衍生化,以通过傅里叶变换离子回旋谐振质谱(FT-ICR MS)在风化的石油中表征酮/醛的函数(提出的光氧化转化产物)。在漏油后,仅光氧化微观模仿环境中原油的太阳照射。仅生物降解的微观微观使得独立的测定能够有助于形成油溶性酮/醛物质中的哪一个。结果确认在实验室实验中暴露于太阳辐射时,光氧化在原油中产生酮/醛,而生物降解油样品不产生酮/醛化合物。在深水地平线油溢出后的不同时间段和位置收集的田间样本也显示出含酮/醛,以及场和光氧化微观转换产品的比较显示出显着的相似性。这些结果表明光氧化微观综合地代表了该领域的酮/醛形成产物,而生物降解薄粒子不会。与衍生化偶联的固相萃取导致MS选择性鉴定酮/醛物种。尽管通过分离/衍生化实现了动态范围和略微降低的质谱复杂性,但是综合分子表征仍然需要由FT-ICR MS提供的质量分辨率和质量精度。

著录项

  • 来源
    《Environmental Science & Technology》 |2019年第12期|6887-6894|共8页
  • 作者单位

    Florida State Univ Dept Chem & Biochem 95 Chieftain Way Tallahassee FL 32306 USA|Florida State Univ Ion Cyclotron Resonance Program Natl High Magnet Field Lab Tallahassee FL 32310 USA;

    Florida State Univ Ion Cyclotron Resonance Program Natl High Magnet Field Lab Tallahassee FL 32310 USA;

    Florida State Univ Ion Cyclotron Resonance Program Natl High Magnet Field Lab Tallahassee FL 32310 USA;

    Florida State Univ Ion Cyclotron Resonance Program Natl High Magnet Field Lab Tallahassee FL 32310 USA;

    Florida State Univ Dept Chem & Biochem 95 Chieftain Way Tallahassee FL 32306 USA;

    Florida State Univ Ion Cyclotron Resonance Program Natl High Magnet Field Lab Tallahassee FL 32310 USA|Florida State Univ Future Fuels Inst 1800 East Paul Dirac Dr Tallahassee FL 32310 USA;

    Florida State Univ Dept Chem & Biochem 95 Chieftain Way Tallahassee FL 32306 USA|Florida State Univ Ion Cyclotron Resonance Program Natl High Magnet Field Lab Tallahassee FL 32310 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:36:54

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