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Laboratory study of the collection efficiency of submicron aerosol particles by cloud droplets – Part I: Influence of relative humidity

机译:云液滴亚微米气溶胶粒子收集效率的实验室研究 - I部分:相对湿度的影响

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A new In-Cloud Aerosol Scavenging Experiment (In-CASE) has been conceived to measure the collection efficiency (CE) of submicron aerosol particles by cloud droplets. In this setup, droplets fall at their terminal velocity through a 1?m high chamber in a laminar flow containing aerosol particles. At the bottom of the In-CASE chamber, the droplet train is separated from the aerosol particle flow – droplets are collected in an impaction cup, whereas aerosol particles are deposited on a high-efficiency particulate air?(HEPA) filter. The collected droplets and the filter are then analysed by fluorescence spectrometry since the aerosol particles are atomised from a sodium fluorescein salt solution ( C 20 H 10 Na 2 O 5 ). In-CASE fully controls all the parameters which affect the CE – the droplets and aerosol particles size distributions are monodispersed, the electric charges of droplets and aerosol particles are controlled, and the relative humidity is indirectly set via the chamber's temperature. This novel In-CASE setup is presented here as well as the first measurements obtained to study the impact of relative humidity on CE. For this purpose, droplets and particles are electrically neutralised. A droplet radius of 49.6±1.3 ? μ m has been considered for six particle dry radii between 50 and 250?nm and three relative humidity levels of 71.1±1.3 ?%, 82.4±1.4 ?% and 93.5±0.9 ?%. These new CE measurements have been compared to theoretical models from literature which adequately describe the relative humidity influence on the measured CE.
机译:已经构思了一种新的云气溶胶清除实验(内容)以测量云液滴的亚微米气溶胶颗粒的收集效率(CE)。在该设置中,液滴在含有气溶胶颗粒的层流中的1·M高室中落后于其终端速度。在内壳腔室的底部,液滴列车与气溶胶颗粒流动 - 液滴在撞击杯中收集,而气溶胶颗粒沉积在高效颗粒空气中?(HEPA)过滤器。然后通过荧光光谱法分析收集的液滴和过滤器,因为气溶胶颗粒由荧光素盐溶液雾化(C 20 H 10 Na 2 O 5)雾化。案例完全控制影响CE的所有参数 - 液滴和气溶胶颗粒尺寸分布是单分散的,控制液滴和气溶胶颗粒的电荷,并且相对湿度通过腔室的温度间接设定。这里提出了这种新型的内容设置以及获得了研究相对湿度对Ce的影响的第一测量。为此目的,电液体和颗粒是电中和的。滴半径为49.6±1.3?已被认为是六个颗粒干半径的50至250℃,三个相对湿度水平为71.1±1.3Ω%,82.4±1.4Ω%和93.5±0.9?%。将这些新的CE测量与来自文献的理论模型进行了比较,从而充分描述了对测量CE的相对湿度影响。

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