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Aerosol Physicochemical Properties in Relation to Meteorology: Case Studies in Urban, Marine and Arid Settings

机译:与气象学相关的气溶胶理化性质:城市,海洋和干旱地区的案例研究

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摘要

Atmospheric aerosols are a highly relevant component of the climate system affecting atmospheric radiative transfer and the hydrological cycle. As opposed to other key atmospheric constituents with climatic relevance, atmospheric aerosol particles are highly heterogeneous in time and space with respect to their size, concentration, chemical composition and physical properties. Many aspects of their life cycle are not understood, making them difficult to represent in climate models and hard to control as a pollutant. Aerosol-cloud interactions in particular are infamous as a major source of uncertainty in future climate predictions. Field measurements are an important source of information for the modeling community and can lead to a better understanding of chemical and microphysical processes. In this study, field data from urban, marine, and arid settings are analyzed and the impact of meteorological conditions on the evolution of aerosol particles while in the atmosphere is investigated. Particular attention is given to organic aerosols, which are a poorly understood component of atmospheric aerosols. Local wind characteristics, solar radiation, relative humidity and the presence or absence of clouds and fog are found to be crucial factors in the transport and chemical evolution of aerosol particles. Organic aerosols in particular are found to be heavily impacted by processes in the liquid phase (cloud droplets and aerosol water). The reported measurements serve to improve the process-level understanding of aerosol evolution in different environments and to inform the modeling community by providing realistic values for input parameters and validation of model calculations.
机译:大气气溶胶是影响大气辐射传递和水文循环的气候系统中高度相关的组成部分。与具有气候相关性的其他关键大气成分相反,大气气溶胶颗粒的大小,浓度,化学成分和物理性质在时间和空间上高度异质。人们对其生命周期的许多方面都不了解,这使得它们很难在气候模型中表示,也很难作为污染物进行控制。气溶胶-云之间的相互作用尤其是臭名昭著,是未来气候预测中不确定性的主要来源。现场测量是建模社区的重要信息来源,可以使人们更好地了解化学和微物理过程。在这项研究中,分析了来自城市,海洋和干旱地区的野外数据,并研究了气象条件对大气中气溶胶颗粒演变的影响。特别关注有机气溶胶,这是大气气溶胶的一个鲜为人知的成分。人们发现,局部风的特征,太阳辐射,相对湿度以及是否存在云雾均是气溶胶颗粒传输和化学演化的关键因素。特别是有机气溶胶受到液相过程(云滴和气溶胶水)的严重影响。所报告的测量结果有助于提高过程级别对不同环境中气溶胶演变的理解,并通过为输入参数提供实际值和模型计算验证来告知建模界。

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    Wonaschuetz Anna;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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