首页> 外文期刊>Environmental Science: Processes & Impacts >Development of a hydrophilic interaction liquid chromatography (HILIC) method for the chemical characterization of water-soluble isoprene epoxydiol (IEPOX)-derived secondary organic aerosol
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Development of a hydrophilic interaction liquid chromatography (HILIC) method for the chemical characterization of water-soluble isoprene epoxydiol (IEPOX)-derived secondary organic aerosol

机译:水溶性异戊二烯环氧二醇(IePox)二次有机气溶胶化学表征的亲水性相互作用液相色谱(HILIC)方法的研制

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摘要

Acid-catalyzed multiphase chemistry of isoprene epoxydiols (IEPOX) on sulfate aerosol produces substantial amounts of water-soluble secondary organic aerosol (SOA) constituents, including 2-methyltetrols, methyltetrol sulfates, and oligomers thereof in atmospheric fine particulate matter (PM2.5). These constituents have commonly been measured by gas chromatography interfaced to electron ionization mass spectrometry (GC/EI-MS) with prior derivatization or by reverse-phase liquid chromatography interfaced to electrospray ionization high-resolution mass spectrometry (RPLC/ESI-HR-MS). However, both techniques have limitations in explicitly resolving and quantifying polar SOA constituents due either to thermal degradation or poor separation. With authentic 2-methyltetrol and methyltetrol sulfate standards synthesized in-house, we developed a hydrophilic interaction liquid chromatography (HILIC)/ESI-HR-quadrupole time-of-flight mass spectrometry (QTOFMS) protocol that can chromatographically resolve and accurately measure the major IEPOX-derived SOA constituents in both laboratory-generated SOA and atmospheric PM2.5. 2-Methyltetrols were simultaneously resolved along with 4-6 diastereomers of methyltetrol sulfate, allowing efficient quantification of both major classes of SOA constituents by a single non-thermal analytical method. The sum of 2-methyltetrols and methyltetrol sulfates accounted for approximately 92%, 62%, and 21% of the laboratory-generated beta-IEPOX aerosol mass, laboratory-generated delta-IEPOX aerosol mass, and organic aerosol mass in the southeastern U.S., respectively, where the mass concentration of methyltetrol sulfates was 171-271% the mass concentration of methyltetrol. Mass concentrations of methyltetrol sulfates were 0.39 and 2.33 mu g m(-3) in a PM2.5 sample collected from central Amazonia and the southeastern U.S., respectively. The improved resolution clearly reveals isomeric patterns specific to methyltetrol sulfates from acid-catalyzed multiphase chemistry of beta- and delta-IEPOX. We also demonstrate that conventional GC/EI-MS analyses overestimate 2-methyltetrols by up to 188%, resulting (in part) from the thermal degradation of methyltetrol sulfates. Lastly, C-5-alkene triols and 3-methyltetrahydrofuran-3,4-diols are found to be largely GC/EI-MS artifacts formed from thermal degradation of 2-methyltetrol sulfates and 3-methyletrol sulfates, respectively, and are not detected with HILIC/ESI-HR-QTOFMS.
机译:异戊二烯环氧二醇(IePox)酸催化的多相化学在硫酸盐气溶胶上产生大量的水溶性二次有机气溶胶(SOA)成分,包括大气细颗粒物质(PM2.5)中的2-甲基四硫酸盐,甲基四硫酸甲基硫酸盐和低聚物。这些组分通常通过与电子电离质谱(GC / EI-MS)接合的气相色谱法测量,并通过与电喷雾电离高分辨率质谱(RPLC / ESI-HR-MS)接合的反相液相色谱法(RPLC / ESI-HR-MS)进行反相液相色谱法。然而,两种技术在明确地解析和量化由于热降解或分离不良而定量的极性SOA成分的限制。通过在内部合成的正宗2-甲基四乙醇和甲基四硫酸甲基硫酸盐标准物中,我们开发了亲水性相互作用液相色谱(HILIC)/ ESI-HR-QUADRUMRUPOLE的飞行时间质谱(QTOFMS)方案,可以色谱分辨和准确地测量主要在实验室生成的SOA和大气PM2.5中的IEPOX衍生的SOA成分。同时分解2-6-6个甲基四硫酸甲基硫酸盐,允许通过单一的非热分析方法有效地定量SOA成分的主要类别。 2-甲基四硫醇和甲基四硫酸甲基硫酸盐的总和占实验室生成的β-Iepox气溶胶质量,实验室产生的Delta-Iepox气溶胶质量,以及美国东南部的有机气溶胶块的约92%,62%和21%,分别,其中甲基四硫酸甲基硫酸盐的质量浓度为171-271%,质量浓度的甲基四乙醇。在从中央亚马察亚洲和东南部收集的PM2.5样品中,甲基硫酸甲基硫酸盐的质量浓度为0.39和2.33μg)。改进的分辨率清楚地揭示了来自β-和Delta-Iepox的酸催化的多相化学的甲基四硫酸甲基硫酸盐特异性的异构模式。我们还证明,常规的GC / EI-MS分析高达188%的甲基四甲基四核,从甲基四硫酸甲基硫酸盐的热降解产生(部分)。最后,发现C-5-烯烃三醇和3-甲基四氢呋喃-3,4-二醇是由2-甲基四硫酸硫酸盐和3-甲基四硫酸硫酸盐的热劣化形成的GC / EI-MS伪像,并且没有检测到用HILIC / ESI-HR-QTOFMS。

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    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ Fed Amazonas Dept Chem Manaus Amazonas Brazil;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ State Amazonas Super Sch Technol Manaus Amazonas Brazil;

    Harvard Univ Sch Engn &

    Appl Sci Cambridge MA 02138 USA;

    Univ Fed Amazonas Dept Chem Manaus Amazonas Brazil;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

    Univ Michigan Dept Environm Hlth Sci Ann Arbor MI 48109 USA;

    Univ N Carolina Dept Environm Sci &

    Engn Gillings Sch Global Publ Hlth Chapel Hill NC 27515 USA;

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  • 正文语种 eng
  • 中图分类 环境质量评价与环境监测;
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