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Fog- and cloud-induced aerosol modification observed by the Aerosol Robotic Network (AERONET)

机译:气雾机器人网络(AERONET)观察到的雾气和云气引起的气溶胶修饰

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摘要

Large fine mode-dominated aerosols (submicron radius) in size distributions retrieved from the Aerosol Robotic Network (AERONET) have been observed after fog or low-altitude cloud dissipation events. These column-integrated size distributions have been obtained at several sites in many regions of the world, typically after evaporation of low-altitude cloud such as stratocumulus or fog. Retrievals with cloud-processed aerosol are sometimes bimodal in the accumulation mode with the larger-size mode often similar to 0.4-0.5 mu m radius (volume distribution); the smaller mode, typically similar to 0.12 to similar to 0.20 mu m, may be interstitial aerosol that were not modified by incorporation in droplets and/or aerosol that are less hygroscopic in nature. Bimodal accumulation mode size distributions have often been observed from in situ measurements of aerosols that have interacted with clouds, and AERONET size distribution retrievals made after dissipation of cloud or fog are in good agreement with particle sizes measured by in situ techniques for cloud-processed aerosols. Aerosols of this type and large size range (in lower concentrations) may also be formed by cloud processing in partly cloudy conditions and may contribute to the "shoulder" of larger-size particles in the accumulation mode retrievals, especially in regions where sulfate and other soluble aerosol are a significant component of the total aerosol composition. Observed trends of increasing aerosol optical depth (AOD) as fine mode radius increased suggests higher AOD in the near-cloud environment and higher overall AOD than typically obtained from remote sensing owing to bias toward sampling at low cloud fraction.
机译:在雾或低空云消散事件发生后,已经观察到从气溶胶机器人网络(AERONET)检索到的尺寸分布较大的精细模式占主导的气溶胶(亚微米半径)。这些列积分的大小分布已在世界许多地区的多个站点获得,通常是在平流积云或雾等低空云蒸发之后。经过云处理的气溶胶的回收有时在累积模式下是双峰的,较大尺寸的模式通常类似于半径0.4-0.5μm(体积分布)。较小的模式,通常类似于0.12至类似于0.20μm,可以是间质气溶胶,该气溶胶没有通过掺入本质上不易吸湿的液滴和/或气溶胶中而得到改性。通常从与云相互作用的气溶胶的原位测量中观察到双峰累积模式尺寸分布,并且在消散云或雾之后进行的AERONET尺寸分布检索与通过云技术处理的气溶胶的原位技术测量的粒径非常吻合。这种类型的气溶胶和大尺寸范围(在较低浓度下)的气溶胶也可能在部分多云的条件下通过云处理形成,并且可能在累积模式取回过程中,尤其是在硫酸盐和其他物质聚集的区域,助长了较大尺寸颗粒的“肩”形。可溶性气溶胶是总气溶胶成分的重要组成部分。随着细模半径的增加,观察到的气溶胶光学深度(AOD)的增加趋势表明,由于偏向低云量采样,因此在近云环境中的AOD值比从遥感获得的值更高,而在总体AOD值方面也更高。

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