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Particle-Phase Diffusion Modulates Partitioning of Semivolatile Organic Compounds to Aged Secondary Organic Aerosol

机译:颗粒相扩散调节半挥发性有机化合物向老化的次级有机气溶胶的分配

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摘要

The diffusivity of semivolatile organic compounds (SVOCs) in the bulk particle phase of a viscous atmospheric secondary organic aerosol (SOA) can have a profound impact on aerosol growth and size distribution dynamics. Here, we investigate the bulk diffusivity of SVOCs formed from photo-oxidation of isoprene as they partition to a bimodal aerosol consisting of an Aitken (potassium sulfate) and accumulation mode (aged a-pinene SOA) particles as a function of relative humidity (RH). The model analysis of the observed size distribution evolution shows that liquid-like diffusion coefficient values of D_b > 10~(-10) cm~2 s~(-1) fail to explain the growth of the Aitken mode. Instead, much lower values of D_b between 2.5 × 10~(-15) cm~2 s~(-1) at 32% RH and 8 × 10~(-15) cm~2 s~(-1) at 82% RH were needed to successfully reproduce the growth of both modes. The diffusivity within the aged a-pinene SOA remains appreciably slow even at 80% RH, resulting in hindered partitioning of SVOCs to large viscous particles and allowing smaller and relatively less viscous particles to effectively absorb the available SVOCs and grow much faster than would be possible otherwise. These results have important implications for modeling SOA formation and growth in the ambient atmosphere.
机译:半挥发性有机化合物(SVOC)在粘性大气二次有机气溶胶(SOA)的本体颗粒相中的扩散性可能对气溶胶的生长和尺寸分布动力学产生深远的影响。在这里,我们研究了由异戊二烯的光氧化形成的SVOC的整体扩散率,因为它们分配给由Aitken(硫酸钾)和累积模式(老化的a-pinene SOA)颗粒组成的双峰气溶胶,是相对湿度(RH)的函数)。对观察到的尺寸分布演变的模型分析表明,D_b> 10〜(-10)cm〜2 s〜(-1)的液体状扩散系数值无法解释Aitken模式的增长。相反,在32%RH时,D_b的值低得多,介于2.5×10〜(-15)cm〜2 s〜(-1)和82%时为8×10〜(-15)cm〜2 s〜(-1)要成功重现两种模式的生长,需要使用RH。即使在80%RH的条件下,老化的α-pine烯SOA内的扩散率仍会明显降低,从而导致SVOC分配到大粘性颗粒的过程受阻,并且允许较小和相对较小粘性的颗粒有效吸收可用的SVOC,并且生长速度比可能的快得多。除此以外。这些结果对于模拟SOA在周围大气中的形成和增长具有重要意义。

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  • 来源
    《Environmental Science & Technology》 |2020年第5期|2595-2605|共11页
  • 作者单位

    Atmospheric Sciences and Global Change Division Pacific Northwest National Laboratory Richland Washington 99352 United States;

    William R Wiley Environmental Molecular Sciences Laboratory Pacific Northwest National Laboratory Richland Washington 99352 United States;

    tmospheric Sciences and Global Change Division Pacific Northwest National Laboratory Richland Washington 993S2 United States;

    Department of Chemistry Purdue University West Lafayette Indiana 47907 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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