Coagulation rate of highly dispersed aerosols

N.A Fuchs, A.G Sutugin
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引用次数: 106

Abstract

The coagulation rate of uncharged NaCl aerosols with mean particle radii of 25 and 45 A. was measured by means of a flow method: the aerosol was passed through a pipe and the ratio of particle concentrations at the inlet and the outlet of the pipe was measured nephelometrically after “developing” the particles by condensing DBP vapor on them. Corrections for particle losses due to diffusion to the walls of the pipe were estimated in separate experiments with diluted aerosols. The absolute value of the particle concentration was determined by ultramicroscopic counting of developed aerosols. The average residence time of the aerosols in the pipe, i.e., the coagulation time, was measured by means of a coarse oil mist. Experimental values 13.4 × 10−10 and 15.0 × 10−10 cm.3/sec. were obtained for the coagulation constant of the aerosols with r = 25 and 45 A., respectively. The values calculated by means of the formula for the number of collisions between gas molecules, taking into account the molecular attraction forces between the particles, are 10.5 × 10−10 and 14.1 × 10−10 cm.3/sec., respectively.

高度分散气溶胶的凝固速率
采用流动法测量了平均颗粒半径为25和45 a的未带电NaCl气溶胶的凝聚率:气溶胶通过管道,通过凝结DBP蒸汽“显色”颗粒后,测量了管道入口和出口颗粒浓度的比。由于扩散到管壁的颗粒损失的修正是在稀释气溶胶的单独实验中估计的。粒子浓度的绝对值是由发育的气溶胶的超微计数确定的。用粗油雾法测定了气溶胶在管内的平均停留时间,即凝固时间。实验值13.4 × 10−10和15.0 × 10−10 cm.3/sec。分别求出r = 25和45 A时气溶胶的混凝常数。考虑粒子间的分子引力,用气体分子间碰撞次数公式计算得到的数值分别为10.5 × 10−10和14.1 × 10−10 cm.3/秒。,分别。
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