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Sub-10 nm particle growth by vapor condensation – effects of vapor molecule size and particle thermal speed

机译:蒸汽冷凝产生的亚10纳米颗粒增长–蒸汽分子大小和颗粒热速度的影响

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摘要

The growth of freshly formed nanoparticles has been investigated. A new analytical expression based on a recently developed exact solution for the condensational growth rate has been derived. Based on the new growth rate, a new approximate but accurate analytical expression for growth time has been derived. The expression includes transition regime effects on growth, molecule size effects on the collision cross section and particle thermal speed effects on the relative collisional speeds – the last two of which are typically neglected, but may have significant effects when dealing with the growth of freshly nucleated particles. To demonstrate the use of the derived expressions, the contribution of sulphuric acid and organic compounds on sub 3 nm and sub 10 nm particle growth rates has been studied. For sulphuric acid also the effect of hydration as function of relative humidity has been taken into account. According to the new expression the sulphuric acid concentration needed for 1 nm/h growth in sub 3 nm range is ca. 1.5×10 cm, which is a factor of 1.5 smaller than values typically used in aerosol physics based on standard model in kinetic regime.
机译:已经研究了新形成的纳米颗粒的生长。基于最近开发的凝结增长率的精确解,得出了一个新的分析表达式。基于新的增长率,得出了新的近似但精确的生长时间解析表达式。该表达式包括过渡态对生长的影响,分子大小对碰撞截面的影响以及粒子热速度对相对碰撞速度的影响-通常忽略其中的最后两个,但是在处理新形核时可能会产生重大影响粒子。为了证明所导出表达式的使用,已经研究了硫酸和有机化合物对3 nm以下和10 nm以下颗粒生长速率的影响。对于硫酸,还考虑了水合作用作为相对湿度的函数。根据新的表达式,在低于3 nm的范围内生长1 nm / h所需的硫酸浓度为。 1.5×10 cm,比基于动力学模型中标准模型的气溶胶物理学中通常使用的值小1.5倍。

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