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CCN Properties of Organic Aerosol Collected Below and within Marine Stratocumulus Clouds near Monterey, California

机译:加利福尼亚蒙特雷附近海洋层积云下方和内部收集的有机气溶胶的CCN特性

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The composition of aerosol from cloud droplets differs from that below cloud. Its implications for the Cloud Condensation Nuclei (CCN) activity are the focus of this study. Water-soluble organic matter from below cloud, and cloud droplet residuals off the coast of Monterey, California were collected; offline chemical composition, CCN activity and surface tension measurements coupled with K?hler Theory Analysis are used to infer the molar volume and surfactant characteristics of organics in both samples. Based on the surface tension depression of the samples, it is unlikely that the aerosol contains strong surfactants. The activation kinetics for all samples examined are consistent with rapid (NH4)2SO4 calibration aerosol. This is consistent with our current understanding of droplet kinetics for ambient CCN. However, the carbonaceous material in cloud drop residuals is far more hygroscopic than in sub-cloud aerosol, suggestive of the impact of cloud chemistry on the hygroscopic properties of organic matter.
机译:来自云滴的气溶胶成分与云下方的气溶胶成分不同。它对云凝结核(CCN)活动的影响是本研究的重点。收集了云层下方的水溶性有机物,以及加利福尼亚州蒙特雷沿岸的云滴残留物;离线化学成分,CCN活性和表面张力测量与K?hler理论分析相结合,可用来推断两个样品中有机物的摩尔体积和表面活性剂特性。基于样品的表面张力降低,气雾剂不太可能包含强表面活性剂。所有检测样品的活化动力学与快速(NH 4 2 SO 4 校准气溶胶一致。这与我们目前对环境CCN的液滴动力学的理解是一致的。但是,云滴残留物中的碳质物质比亚云气溶胶的吸湿性要高得多,这表明云化学对有机物的吸湿性的影响。

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