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Water-soluble SOA from Alkene ozonolysis: composition and droplet activation kinetics inferences from analysis of CCN activityudud

机译:烯烃臭氧分解制得的水溶性SOA:通过CCN活性分析得出的组成和液滴活化动力学 ud ud

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摘要

Cloud formation characteristics of the water-soluble organic fraction (WSOC) of secondary organic aerosol (SOA) formed from the ozonolysis of alkene hydrocarbons (terpinolene, 1-methlycycloheptene and cycloheptene) are studied. Based on size-resolved measurements of CCN activity (of the pure and salted WSOC samples) we estimate the average molar volume and surface tension depression associated with the WSOC using Köhler Theory Analysis (KTA). Consistent with known speciation, the results suggest that the WSOC are composed of low molecular weight species, with an effective molar mass below 200 g mol^(−1). The water-soluble carbon is also surface-active, depressing surface tension 10–15% from that of pure water (at CCN-relevant concentrations). The inherent hygroscopicity parameter, κ, of the WSOC ranges between 0.17 and 0.25; if surface tension depression and molar volume effects are considered in κ, a remarkably constant "apparent" hygroscopicity ~0.3 emerges for all samples considered. This implies that the volume fraction of soluble material in the parent aerosol is the key composition parameter required for prediction of the SOA hygroscopicity, as shifts in molar volume across samples are compensated by changes in surface tension. Finally, using "threshold droplet growth analysis", the water-soluble organics in all samples considered do not affect CCN activation kinetics.ud
机译:研究了由烯烃(萜品油烯,1-甲基环庚烯和环庚烯)的臭氧分解形成的二次有机气溶胶(SOA)的水溶性有机组分(WSOC)的云形成特性。基于大小分辨的CCN活性(纯净的和盐腌的WSOC样品)的测量值,我们使用Köhler理论分析(KTA)估算了与WSOC相关的平均摩尔体积和表面张力降低。与已知的物种形成一致,结果表明WSOC由低分子量物质组成,有效摩尔质量低于200 g mol ^(-1)。水溶性碳也具有表面活性,比纯水(在CCN相关浓度下)的表面张力降低10–15%。 WSOC的固有吸湿性参数κ在0.17至0.25之间;反之亦然。如果在κ中考虑了表面张力的降低和摩尔体积的影响,则对于所有考虑的样品,其“表观”吸湿性均显着恒定,约为0.3。这意味着母体气溶胶中可溶物质的体积分数是预测SOA吸湿性所需的关键组成参数,因为整个样品的摩尔体积的变化可通过表面张力的变化来补偿。最后,使用“阈值液滴生长分析”,所有样品中的水溶性有机物均不影响CCN活化动力学。

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