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Kinetics and Mechanisms of Chemical Reactions in Clouds and Fogs

机译:云雾中化学反应的动力学和机理

摘要

Clouds, fogs, and haze aerosols are subjected to the same chemical processes because of their physical similarities. For example, cloud- and fogwater droplets are found in theudsize range of 2 to 50 μm, while deliquescent haze aerosol will be in the range of 0.01 to 1 μm. On the other hand, raindrops are approximately 100 times larger than cloud and fog water droplets (0.1 to 3 mm). However, a more important determinant of aqueous-phase chemistry within the droplets is the liquid water content (LWC); values of LWC rangeudfrom 0.1 to 1.0 g m^(-3) in clouds, from 0.01 to 0.5 g m^(-3) in fogs, and from 10 to 100 μg m^(-3) in haze aerosols. The presence of condensation nuclei, which are composed of both soluble and insoluble materials, is essential for the formation of atmospheric water droplets.udAccretion or evaporation of water to or from the condensation nuclei or droplet is forced by the difference between the ambient and local humidities, and is affected by the droplet surface tension and the chemical potential of the solutes in the liquid phase. During droplet growth, the temperature within the droplet differs from the ambient temperature due to the release of latent heat, which in turn depends upon the instantaneous growth rate.
机译:由于云,雾和烟雾的物理相似性,它们经受相同的化学过程。例如,发现云雾和雾滴的尺寸在2至50μm的范围内,潮解性雾气雾剂的范围在0.01至1μm的范围内。另一方面,雨滴约比云雾和雾滴(0.1至3毫米)大100倍。然而,液滴内水相化学的一个更重要的决定因素是液态水含量(LWC); LWC的值在云中为0.1至1.0 g m ^(-3),在雾中为0.01至0.5 g m ^(-3),在雾霾气溶胶中为10至100μgm ^(-3)。由可溶性和不溶性物质组成的凝结核的存在对于形成大气水滴至关重要。 ud由于周围环境与局部环境之间的差异而迫使水向凝结核或液滴中的富集或蒸发湿度,并受液滴表面张力和液相中溶质的化学势影响。在液滴生长期间,由于潜热的释放,液滴内的温度与环境温度不同,而潜热又取决于瞬时生长速率。

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  • 作者

    Hoffmann Michael R.;

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  • 年度 1989
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