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首页> 外文期刊>The Journal of Chemical Physics >Thermodynamic and kinetic theory of nucleation, deliquescence and efflorescence transitions in the ensemble of droplets on soluble particles
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Thermodynamic and kinetic theory of nucleation, deliquescence and efflorescence transitions in the ensemble of droplets on soluble particles

机译:液滴在可溶颗粒上的成核,潮解和风化转变的热力学和动力学理论

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摘要

Thermodynamic and kinetic peculiarities of nucleation, deliquescence and efflorescence transitions in the ensemble of droplets formed on soluble condensation nuclei from a solvent vapor have been considered. The interplay of the effects of solubility and the size of condensation nuclei has been analyzed. Activation barriers for the deliquescence and phase transitions and for the reverse efflorescence transition have been determined as functions of the relative humidity of the vapor-gas atmosphere, initial size, and solubility of condensation nuclei. It has been demonstrated that, upon variations in the relative humidity of the atmosphere, the crossover in thermodynamically stable and unstable variables of the droplet state takes place. The physical meaning of stable and unstable variables has been clarified. The kinetic equations for establishing equilibrium and steady distributions of binary droplets have been solved. The specific times for relaxation, deliquescence and efflorescence transitions have been calculated.
机译:已经考虑了由溶剂蒸气在可溶性缩合核上形成的液滴的集合中的成核,潮解和风化转变的热力学和动力学特性。分析了溶解度和缩合核大小之间的相互作用。已经确定了潮解和相变以及反风化转变的活化势垒是蒸气-气体气氛的相对湿度,初始尺寸和缩合核的溶解度的函数。已经证明,在大气的相对湿度变化时,发生液滴状态的热力学稳定和不稳定变量的交叉。稳定变量和不稳定变量的物理含义已经阐明。解决了建立二元液滴的平衡和稳定分布的动力学方程。已经计算出弛豫,潮解和风化转变的特定时间。

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