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Influence of relative humidity upon pollution and dust during ACE-Asia: Size distributions and implications for optical properties

机译:在污染和相对湿度的影响尘埃在ACE-Asia:分布和大小对光学性质

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摘要

An extensive set of aerosol physical and optical measurements was taken over the waters east of Asia during the Aerosol Characterization Experiment-Asia (ACE-Asia) project in the spring of 2001. Dust storms upwind of the study area combined with intense pollution plumes from coastal cities yielded an opportunity to examine both types of aerosol, in isolation and as they interacted. Scattering calculated from aerosol size distributions measured with an optical particle counter agreed well with simultaneous nephelometer measurements. We periodically heated sample air to evaporate sulfates and organic material. The change in volume upon heating agreed well with simultaneous measurements of aerosol composition. This volatile material was distributed on dust in rough proportion to surface area. Here we use the particle size and composition data to improve estimates of scattering at ambient humidity and to examine the effects of mixing on the optical properties of both pollution and dust aerosols. The presence of dust results in uptake of soluble and condensible species onto its surface and thereby reduces the mass scattering efficiency of the pollution aerosol by 50% and suppresses the change in scattering due to relative humidity (f(RH)) by up to 35%.
机译:一组广泛的气溶胶的物理和光学测量是在东部海域亚洲在气溶胶特性在春天Experiment-Asia (ACE-Asia)项目2001股。加上强烈的污染羽流沿海城市产生了一个检查的机会这两种类型的气溶胶,隔离他们互动。尺寸分布与光学测量粒子计数器同意与同步浊度计测量。样本空气蒸发硫酸盐和有机的材料。同意的同时测量气溶胶组成。分布在尘土中粗略的比例表面积。组成数据以改进的估计散射环境湿度和检查混合的光学特性的影响污染和粉尘气溶胶。尘埃吸收可溶性和可冷凝的结果物种在其表面,从而降低了质量散射效率的污染气溶胶50%,抑制的变化散射由于相对湿度(f (RH))到35%。

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