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首页> 外文期刊>Chemical Engineering Science >A model for two-component aerosol coagulation and phase seapration: a method for changing the growth rate of nanoparticles
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A model for two-component aerosol coagulation and phase seapration: a method for changing the growth rate of nanoparticles

机译:两组分气溶胶凝结和相接的模型:改变纳米颗粒生长速率的方法

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摘要

In previous studies of particle growth we have synthesized binary metal oxide aerolsols and have observed the evolution of internal phase segregation during growth of molten nanodroplets. We have also generated NaCl/metal aerosols in which the metal nanoparticle is enveloped within a salt droplet. In both systems the nanoparticles wer grown in the molten state. In this paper we propose a model which incorporates phase segregation in a binary aerosol. The model assumes that complete phase segregation is the thermodynamically favored state, that no thermodynamic activation energy exists, and that the phase segregation process is kinetically controlled. The results indicate that a steady state behavior can be reached in which the characteristic time for aerosol coagulation and the characteristic time of hte minority phase coincide such that the number of distinct segregated entitites within each aerosol droplet is constant. The results suggest what we believe to be an improtant concept that can be utilized in materials synthesis. This is that the major phase can be used to moderate the growth rate of the minor phase by changing the characteristic encounter frequency and therefore the eventual growth rate of the minority phase. In particular, temperature, which does not play an important role in aerosol coagulation, is seen to be a very sensitive parameter for the growth of the minority phase nanoparticles. We discuss the parameter space necessary for this to occur.
机译:在先前的颗粒生长研究中,我们合成了二元金属氧化物气溶胶,并观察到了熔融纳米液滴生长过程中内相偏析的演变。我们还生成了NaCl /金属气溶胶,其中的金属纳米颗粒被包裹在盐滴中。在两个系统中,纳米粒子都以熔融状态生长。在本文中,我们提出了一种在二元气溶胶中包含相分离的模型。该模型假定完全的相分离是热力学上有利的状态,不存在热力学活化能,并且相分离过程是动力学控制的。结果表明,可以达到稳态行为,其中气溶胶凝结的特征时间和少数相的特征时间重合,从而每个气溶胶液滴中不同的分离的白蚁的数量是恒定的。结果表明我们认为这是可用于材料合成的重要概念。这是可以通过改变特征相遇频率以及因此改变少数相的最终增长率来使用主要相来缓和次要相的增长率。特别地,在气溶胶凝结中不起重要作用的温度被认为是少数相纳米颗粒生长的非常敏感的参数。我们讨论了为此发生所需的参数空间。

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