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Ultrahigh-Resolution Mass Spectrometry in Real Time: Atmospheric Pressure Chemical Ionization Orbitrap Mass Spectrometry of Atmospheric Organic Aerosol

机译:超高分辨率质谱实时:大气压化学电离轨道径向大气有机气溶胶质谱

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摘要

The accurate and precise mass spectrometric measurement of organic compounds in atmospheric aerosol particles is a challenging task that requires analytical developments and adaptations of existing techniques for the atmospheric application. Here we describe the development and characterization of an atmospheric pressure chemical ionization Orbitrap mass spectrometer (APCI-Orbitrap-MS) for the measurement of organic aerosol in real time. APCI is a well-known ionization technique, featuring minimal fragmentation and matrix dependencies, and allows rapid alternation between the positive and negative ionization mode. As a proof of principle, we report ambient organic aerosol composition in real-time, with alternating ionization, high mass resolution (R = 140 000) and accuracy (2 ppm). The instrument was calibrated in the negative ion mode using 3-methyl-1,2,3-butanetricarboxylic acid (MBTCA) model aerosol. We obtain a detection limit of 1.3 ng/m(3). Based on the performed calibration using MBTCA particles, the ambient concentration of MBTCA in the particle phase measured in an urban area in Mainz, Germany, ranged between 10 and 80 ng/m(3). For the first time, we apply a nontarget screening approach on real-time data, showing molecular variability between ambient day- and nighttime aerosol composition. The detected compounds were grouped in the night- and daytime and analyzed by ultrahigh-resolution MS (UHRMS) visualization methods. Among several prevalent biogenic secondary organic aerosol (BSOA) markers, 24 organic mononitrates and one organic dinitrate were detected. We further estimate that, on average, organic nitrates contribute to 5% and 14% of the measured particulate organic aerosol at day and night, respectively.
机译:大气气溶胶颗粒中有机化合物的精确和精确的质谱测量是一个具有挑战性的任务,需要对大气应用的现有技术的分析和适应性。在这里,我们描述了大气压化学电离壁图质谱仪(APCI-orbitrap-MS)实时测量有机气溶胶的开发和表征。 APCI是一种众所周知的电离技术,具有最小的碎片化和矩阵依赖性,并且允许正极和负电离模式之间的快速交替。作为原理的证据,我们在实时报告环境有机气溶胶组合物,具有交替电离,高质量分辨率(R = 140 000)和精度(&lt 2ppm)。使用3-甲基-1,2,3-丁烷羧酸(MBTCA)模型气溶胶在负离子模式中校准仪器。我们获得1.3 ng / m(3)的检出限。基于使用MBTCA颗粒的进行校准,在德国华美斯岛市区的城市地区测量的粒子阶段中MBTCA的环境浓​​度范围为10至80ng / m(3)。我们首次采用Nontarget筛选方法在实时数据上,显示环境日与夜间气溶胶组合物之间的分子变异性。检测到的化合物在夜间和白天分段,并通过超高分辨率MS(UHRMS)可视化方法分析。在几种普遍的生物学二次有机气溶胶(BSO)标记中,检测到24种有机纯硝酸盐和一种有机二硝酸酯。我们进一步估计,平均而言,有机硝酸盐分别在白天和夜晚有助于测量的颗粒状有机气溶胶的5%和14%。

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  • 来源
    《Analytical chemistry》 |2018年第15期|共8页
  • 作者单位

    Johannes Gutenberg Univ Mainz Inst Inorgan Chem &

    Analyt Chem D-55128 Mainz Germany;

    Paul Scherrer Inst Lab Environm Chem CH-5232 Villigen Switzerland;

    Johannes Gutenberg Univ Mainz Inst Inorgan Chem &

    Analyt Chem D-55128 Mainz Germany;

    Johannes Gutenberg Univ Mainz Inst Inorgan Chem &

    Analyt Chem D-55128 Mainz Germany;

    Johannes Gutenberg Univ Mainz Inst Inorgan Chem &

    Analyt Chem D-55128 Mainz Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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