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首页> 外文期刊>Drying technology: An International Journal >Modeling of Solution Droplet Evaporation and Particle Evolution in Droplet-to-Particle Spray Methods
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Modeling of Solution Droplet Evaporation and Particle Evolution in Droplet-to-Particle Spray Methods

机译:液滴-微粒喷雾法中溶液液滴蒸发和颗粒演化的建模

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摘要

A mathematical model for the entire process of micro- and nano-particle formation via one-step, direct conversion of solution droplets to particles with application to spray-drying and pyrolysis techniques is developed. Here we identify three physical stages for drying of solution droplets, including shrinkage, induction, and constant-diameter periods. The characteristics of these periods are studied by considering the drying of a population of solution droplets introduced into a hot wall reactor. The particle evolution and intra-particle phenomena in each period are elucidated. Numerical results show that low reactor wall temperatures, larger droplet number densities, and smaller initial droplet sizes favor the formation of fully filled particles, and the carrier gas flow rate has no effect on particle morphology.
机译:建立了通过一步将溶液液滴直接转化为颗粒并应用于喷雾干燥和热解技术的整个微米和纳米颗粒形成过程的数学模型。在这里,我们确定了溶液液滴干燥的三个物理阶段,包括收缩,诱导和恒定直径周期。通过考虑将引入热壁反应器中的溶液液滴进行干燥来研究这些时期的特征。阐明了每个时期的粒子演化和粒子内现象。数值结果表明,低的反应器壁温,较大的液滴数密度和较小的初始液滴尺寸有利于形成完全填充的颗粒,并且载气流速对颗粒形态没有影响。

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