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Size-resolved CCN distributions and activation kinetics of aged continental and marine aerosol

机译:大欧洲和海洋气溶胶的大小分辨CCN分布和激活动力学

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We present size-segregated measurements of cloud condensation nucleus (CCN) activity of aged aerosol sampled at Finokalia, Crete, during the Finokalia Aerosol Measurement Experiment of summer 2007 (FAME07). From analysis of the data, hygroscopicity and activation kinetics distributions are derived. The CCN are found to be highly hygroscopic, (expressed by a size- and time- averaged hygroscopicity parameter 0.22), with the majority of particles activating at ~0.5–0.6 % supersaturation. Air masses originating from Central-Eastern Europe tend to be associated with higher CCN concentrations and slightly lower hygroscopicity ( 0.18) than for other airmass types. The particles were always well mixed, as reflected by the high activation ratios and narrow hygroscopicity distribution widths. Smaller particles (~40 nm) were found to be more hygroscopic (~0.1κ units higher) than the larger ones (~100 nm). The particles with diameters less than 80 nm exhibited a diurnal hygroscopicity cycle (with κ peaking at ~14 h local time), consistent with photochemical aging and volatilization of less hygroscopic material from the aerosol. Use of bulk chemical composition and the aerosol number distribution results in excellent CCN closure when applying K?hler theory in its simplest form. Using asymptotic and threshold droplet growth analysis, the "aged" organics present in the aerosol were found not to suppress or delay the water uptake kinetics of particles in this environment.
机译:我们在2007年夏季Finokalia气溶胶测量实验期间,在Finokalia(Fame07)的Finokalia气溶胶测量实验中,呈现在Finokalia,克里特岛的云凝结细胞核(CCN)活性的云凝结核(CCN)活性的尺寸分离测量。根据数据分析,推导出吸湿性和活化动力学分布。发现CCN高度吸湿性,(由尺寸和时平均吸湿性参数0.22表示),大部分颗粒在过饱和〜0.5-0.6%的〜0.5-0.6%。来自中东欧洲的空气群众往往与较高的CCN浓度和略低较低的吸湿性(0.18)相关(0.18)。颗粒总是很好地混合,如高活化比和窄的吸湿性分布宽度反射。发现较小的颗粒(〜40nm)比较大的颗粒(〜40nm更高)更加吸湿(〜0.1κ单位)(〜100nm)。具有小于80nm的直径的颗粒表现出昼夜吸湿性循环(κ峰值在〜14小时局部时间),与光化学衰老和来自气溶胶的吸湿材料的挥发一致。在最简单的形式时,使用散装化学成分和气溶胶编号分布的优异CCN闭合。使用渐近和阈值液滴生长分析,发现气溶胶中存在的“年龄”有机物不抑制或延迟这种环境中颗粒的水吸收动力学。

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