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The Influence of Absolute Mass Loading of Secondary Organic Aerosols on Their Phase State

机译:次级有机气溶胶绝对质量负荷对其相态的影响

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Absolute secondary organic aerosol (SOA) mass loading (C SOA ) is a key parameter in determining partitioning of semi- and intermediate volatility compounds to the particle phase. Its impact on the phase state of SOA, however, has remained largely unexplored. In this study, systematic laboratory chamber measurements were performed to elucidate the influence of C SOA , ranging from 0.2 to 160 μg m ?3 , on the phase state of SOA formed by ozonolysis of various precursors, including α-pinene, limonene, cis -3-hexenyl acetate (CHA) and cis -3-hexen-1-ol (HXL). A previously established method to estimate SOA bounce factor (BF, a surrogate for particle viscosity) was utilized to infer particle viscosity as a function of C SOA . Results show that under nominally identical conditions, the maximum BF decreases by approximately 30% at higher C SOA , suggesting a more liquid phase state. With the exception of HXL-SOA (which acted as the negative control), the phase state for all studied SOA precursors varied as a function of C SOA . Furthermore, the BF was found to be the maximum when SOA particle distributions reached a geometric mean particle diameter of 50–60 nm. Experimental results indicate that C SOA is an important parameter impacting the phase state of SOA, reinforcing recent findings that extrapolation of experiments not conducted at atmospherically relevant SOA levels may not yield results that are relevant to the natural environment.
机译:绝对二次有机气溶胶(SOA)的质量负荷(C SOA)是确定半挥发性和中等挥发性化合物向颗粒相分配的关键参数。但是,它对SOA的状态的影响在很大程度上尚待探索。在这项研究中,进行了系统的实验室腔室测量,以阐明0.2至160μgm?3的C SOA对通过臭氧分解各种前体(包括α-pine烯,li烯,顺乙酸3-己烯酯(CHA)和顺式-3-己烯-1-醇(HXL)。利用先前建立的估计SOA反弹因子(BF,颗粒粘度的替代物)的方法来推断颗粒粘度与C SOA的关系。结果表明,在名义上相同的条件下,在较高的C SOA下,最大BF降低约30%,表明液相状态更高。除HXL-SOA(用作阴性对照)外,所有研究的SOA前体的相态均随C SOA的变化而变化。此外,当SOA颗粒分布达到50-60 nm的几何平均粒径时,发现BF最大。实验结果表明,C SOA是影响SOA相态的重要参数,这进一步证明了最近的发现,即未在大气相关SOA水平下进行的实验推断可能不会产生与自然环境相关的结果。

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