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Exploring Divergent Volatility Properties from Yield and Thermodenuder Measurements of Secondary Organic Aerosol from α-Pinene Ozonolysis

机译:通过α-P烯臭氧分解法产生的次级有机气溶胶的产率和热剥蚀法测量探索不同的挥发性

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摘要

There are large uncertainties in the parameters dictating the gas-particle partitioning of secondary organic aerosols (SOA), although this process has major influences on their atmospheric lifecyde. Here, we extract parameters that describe the partitioning of SOA from α-pinene ozonolysis using measurements from a dual-thermodenuder (TD) system that constrains both the equilibrium and the kinetic properties that dictate SOA phase partitioning. Parallel TDs that vary in temperature and residence time were used with an evaporation-kinetics model to extract parameter values. An evaporation coefficient of an order of 0.1 best describes the observed evaporation, suggesting equilibration time scales of atmospheric SOA on the order of minutes to hours. A total of 20-40% of SOA mass consists of low-volatility material (saturation concentration of <0.3 μg m~(-3)) in the TD-derived SOA volatility distribution. While distinct from existing parametrizations from aerosol growth experiments, derived values are consistent with recent observations of slow room-temperature evaporation of SOA and contributions from extremely low volatility organic compounds formed during α-pinene ozonolysis. The volatility parameters thus determined suggest that SOA yields and enthalpies of evaporation are substantially higher, and products less volatile, than is currently assumed in atmospheric models. These results will help improve the representation of SOA in air-quality and climate models.
机译:尽管指示该过程对其大气生命周期有重大影响,但决定次级有机气溶胶(SOA)气态颗粒分配的参数仍存在很大的不确定性。在这里,我们提取了参数,该参数使用来自双thermodenuder(TD)系统的测量值来描述α-pine烯臭氧分解过程中SOA的分配,该系统限制了平衡和决定SOA相分配的动力学性质。将温度和停留时间不同的平行TD与蒸发动力学模型一起使用,以提取参数值。数量级为0.1的蒸发系数最能描述观察到的蒸发量,这表明大气SOA的平衡时间范围为数分钟至数小时。在TD衍生的SOA挥发性分布中,总共20-40%的SOA质量由低挥发性材料(饱和浓度<0.3μgm〜(-3))组成。尽管与气溶胶生长实验中现有的参数化方法不同,但得出的值与近期观察到的SOA室温缓慢蒸发以及α-pine烯臭氧分解过程中形成的极低挥发性有机化合物的贡献一致。这样确定的挥发性参数表明,与目前在大气模型中所假定的相比,SOA的产量和蒸发焓显着更高,而产品的挥发性更低。这些结果将有助于改善SOA在空气质量和气候模型中的表示。

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  • 来源
    《Environmental Science & Technology》 |2016年第11期|5740-5749|共10页
  • 作者单位

    Department of Civil, Construction, and Environmental Engineering, North Carolina State University, Raleigh, North Carolina, 27695 United States;

    Department of Civil, Construction, and Environmental Engineering, North Carolina State University, Raleigh, North Carolina, 27695 United States;

  • 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
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