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Effect of nanoparticle concentration on coagulation rate of colloidal suspensions

机译:纳米颗粒浓度对胶体悬浮液混凝速率的影响

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摘要

Theoretically and with the help of numerical simulation the coagulation rate of nanoparticle suspensions is analyzed. Analytical expressions are proposed that describes the rate of stationary coagulation of the nanoparticles suspended in a solvent ( , where is the particle concentration) and the characteristic coagulation time . In the contrast to traditionally used equations, the proposed expressions allow one to describe with high accuracy the rate of stationary coagulation of not only low concentrated suspensions, where the volume content of nanoparticles is %, but also rather highly concentrated ones, at % and more ( where is a particle volume), which are relevant for most of the industrial applications. Analytical expressions are written for both three-dimensional geometry, which is relevant for real colloids, and two-dimensional geometry, which is useful to compare results of the analytical solution and numerical simulation. Computer experiments are performed in the framework of the two-dimensional method of stochastic dynamics. Satisfactory agreement of the obtained analytical expressions with the results of numerical calculations is demonstrated. The dependences of the coagulation time on the height of the interparticle energy barrier and on the suspension concentration are analyzed. It is shown that, in contrast to the obtained theoretical expressions, the traditionally used formulas overestimate the characteristic coagulation time for highly concentrated suspensions by more than an order of magnitude.
机译:理论上并借助数值模拟,分析了纳米颗粒悬浮液的凝固速率。提出了分析表达式,该表达式描述了悬浮在溶剂中的纳米颗粒的静态凝结速率(其中,是颗粒浓度)和特征性凝结时间。与传统使用的方程式相反,所提出的表达式使人们可以高精度地描述纳米颗粒的体积含量为%的低浓度悬浮液的固定凝结速率,以及%或更高浓度的高度浓缩的悬浮液的凝结速率。 (哪里是颗粒体积),与大多数工业应用相关。分别针对与实际胶体相关的三维几何和二维几何编写了解析表达式,这对于比较解析解决方案和数值模拟的结果很有用。计算机实验是在二维随机动力学方法的框架内进行的。证明了所获得的解析表达式与数值计算结果令人满意。分析了凝固时间对颗粒间能垒高度和悬浮液浓度的依赖性。结果表明,与所获得的理论表达式相反,传统使用的公式将高浓度悬浮液的特征凝结时间高估了一个数量级。

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