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首页> 外文期刊>Atmospheric chemistry and physics >Physico-chemical characterization of SOA derived from catechol and guaiacol - A model substance for the aromatic fraction of atmospheric HULIS
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Physico-chemical characterization of SOA derived from catechol and guaiacol - A model substance for the aromatic fraction of atmospheric HULIS

机译:SOA源自儿茶酚和愈菌酚的物理化学特征 - 一种大气漏洞芳香级数的模型物质

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摘要

Secondary organic aerosol (SOA) was produced from the aromatic precursors catechol and guaiacol by reaction with ozone in the presence and absence of simulated sunlight and humidity and investigated for its properties as a proxy for HUmic-LIke Substances (HULIS). Beside a small particle size, a relatively low molecular weight and typical optical features in the UV/VIS spectral range, HULIS contain a typical aromatic and/or olefinic chemical structure and highly oxidized functional groups within a high chemical diversity. Various methods were used to characterize the secondary organic aerosols obtained: Fourier transform infrared spectroscopy (FTIR) demonstrated the formation of several carbonyl containing functional groups as well as structural and functional differences between aerosols formed at different environmental conditions. UV/VIS spectroscopy of filter samples showed that the particulate matter absorbs far into the visible range up to more than 500 nm. Ultrahigh resolved mass spectroscopy (ICR-FT/MS) determined O/Cratios between 0.3 and 1 and observed m/z ratios between 200 and 450 to be most abundant. Temperature-programmedpyrolysis mass spectroscopy (TPP-MS) identified carboxylic acids and lactones/esters as major functional groups. Particle sizing using a condensation-nucleus-counter and differentialmobility- particle-sizer (CNC/DMPS) monitored the formation of small particles during the SOA formation process. Particle imaging, using field-emission-gun scanning electron microscopy (FEG-SEM), showed spherical particles, forming clusters and chains. We conclude that catechol and guaiacol are appropriate precursors for studies of the processing of aromatic SOA with atmospheric HULIS properties on the laboratory scale.
机译:通过与臭氧在存在和不存在模拟的阳光和湿度的情况下,通过与臭氧反应产生二次有机气溶胶(SOA),并研究其作为腐殖质物质(Hulis)的性质的性质。除了小的粒径外,UV / Vis光谱范围内的相对低的分子量和典型的光学特征,Hulis在高化学多样性内含有典型的芳族和/或烯烃化学结构和高度氧化的官能团。使用各种方法来表征获得的二次有机气溶胶:傅里叶变换红外光谱(FTIR)证明了几种含羰基官能团的形成以及在不同环境条件下形成的气溶胶之间的结构和功能差异。过滤器样品的UV / Vis光谱显示,颗粒物体吸收到高达500nm的可见范围。超高分辨质谱(ICR-FT / MS)确定0.3和1之间的o / cratios,并且观察到200到450的m / z比是最丰富的。温度编程吡咯解压缩质谱(TPP-MS)将羧酸和内酯/酯作为主要官能团鉴定。使用缩合核 - 计数器和微分发电性 - 颗粒 - 样品剂(CNC / DMPs)在SOA形成过程中监测小颗粒的形成。颗粒成像,使用现场发射枪扫描电子显微镜(Feg-SEM),显示球形颗粒,形成簇和链。我们得出结论,儿茶酚和GuaiaCol是用于研究芳香SOA的加工在实验室规模上的芳香SOA的适当前体。

著录项

  • 来源
    《Atmospheric chemistry and physics》 |2011年第1期|共15页
  • 作者单位

    Atmospheric Chemistry Research Laboratory University of Bayreuth Germany;

    Atmospheric Chemistry Research Laboratory University of Bayreuth Germany;

    Institute of Materials Chemistry Vienna University of Technology Austria;

    Institute of Ecological Chemistry Helmholtz Zentrum Munich Germany;

    University Service Centre for Transmission Electron Microscopy Vienna University of Technology Austria;

    Atmospheric Chemistry Research Laboratory University of Bayreuth Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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