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New approach to the kinetics of heterogeneous unary nucleation on liquid aerosols of a binary solution

机译:二元溶液液体气溶胶中非均相一元成核动力学的新方法

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The formation of a droplet on a hygroscopic center may occur either in a barrierless way via Kohler activation or via nucleation by overcoming a free energy barrier. Unlike the former, the latter mechanism of this process has been studied very little and only in the framework of the classical nucleation theory based on the capillarity approximation whereby a nucleating droplet behaves like a bulk liquid. In this paper the authors apply another approach to the kinetics of heterogeneous nucleation on liquid binary aerosols, based on a first passage time analysis which avoids the concept of surface tension for tiny droplets involved in nucleation. Liquid aerosols of a binary solution containing a nonvolatile solute are considered. In addition to modeling aerosols formed through the deliquescence of solid soluble particles, the considered aerosols constitute a rough model of "processed" marine aerosols. The theoretical results are illustrated by numerical calculations for the condensation of water vapor on binary aqueous aerosols with nonvolatile nondissociating solute molecules using Lennard-Jones potentials for the molecular interactions. (c) 2006 American Institute of Physics.
机译:吸湿中心液滴的形成可以通过科勒活化以无障碍方式进行,也可以通过克服自由能垒以成核的方式进行。与前者不同,对这一过程的后一种机理的研究很少,而且仅在基于毛细作用近似的经典成核理论的框架内进行研究,在该理论中,成核液滴的行为类似于大块液体。在本文中,作者基于首次通过时间分析避免了涉及成核的微小液滴的表面张力的概念,将另一种方法应用于液态二元气溶胶的异相成核动力学。考虑了包含非挥发性溶质的二元溶液的液体气溶胶。除了对通过固态可溶性颗粒潮解而形成的气溶胶进行建模之外,所考虑的气溶胶还构成了“已加工”海洋气溶胶的粗略模型。通过使用Lennard-Jones势能进行分子相互作用,通过数值计算说明了水蒸气在二元水性气溶胶上与不挥发非离解性溶质分子的缩合的理论计算结果。 (c)2006年美国物理研究所。

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