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一种用于定量评估胶体系统中两个粗糙颗粒间界面相互作用的建模方法。

A modeling approach for quantitative assessment of interfacial interaction between two rough particles in colloidal systems.

作者信息

Lu Duowei, Fatehi Pedram

机构信息

Green Processes Research Centre and Chemical Engineering Department, Lakehead University, 955 Oliver Road, Thunder Bay, ON P7B5E1, Canada.

Green Processes Research Centre and Chemical Engineering Department, Lakehead University, 955 Oliver Road, Thunder Bay, ON P7B5E1, Canada.

出版信息

J Colloid Interface Sci. 2021 Apr;587:24-38. doi: 10.1016/j.jcis.2020.11.121. Epub 2020 Dec 8.

Abstract

HYPOTHESIS AND BACKGROUND

The simulation of rough particle surface is important to understand and control the interface behavior of particles in colloidal systems. Literature analysis suggested a lack of information for an accurate model simulating the interfacial interaction between two rough particles. It is hypothesized that the total interfacial energy developed between two rough particles would depend on the surface morphologies of particles, and it could be predicted if a mathematical model to represent the interaction of two rough particles were created accurately.

EXPERIMENTS

In this study, mathematical models were developed to determine the interfacial energy created between two particles according to the XDLVO theory by considering the rippled particle theory and surface element integral (SEI) method. Three different scenarios of particle interactions were assumed in the simulation. The present study provides deep insights into particle interactions via considering aspect ratio, size, and surface roughness of two particles in colloidal systems.

FINDINGS

The assessment of the interfacial interaction revealed that an increase in the aspect ratio, surface roughness, and relative surface roughness of particles would weaken the total interaction energy generated between particles and promote particle aggregation. Increased interaction energy was predicted for the interaction of particles by increasing the particle size. The asperity ratio was more effective than the asperity number in controlling the interfacial energy between two particles. The results of this study could be used for foreseeing the interaction of rough particles, which has a significant application in particle coagulation or dispersion in colloidal systems.

摘要

假设与背景

模拟粗糙颗粒表面对于理解和控制胶体系统中颗粒的界面行为很重要。文献分析表明,缺乏用于准确模拟两个粗糙颗粒之间界面相互作用的模型信息。据推测,两个粗糙颗粒之间产生的总界面能将取决于颗粒的表面形态,如果能准确创建一个表示两个粗糙颗粒相互作用的数学模型,那么总界面能是可以预测的。

实验

在本研究中,根据扩展DLVO理论,通过考虑波纹颗粒理论和表面元积分(SEI)方法,开发了数学模型来确定两个颗粒之间产生的界面能。在模拟中假设了三种不同的颗粒相互作用情况。本研究通过考虑胶体系统中两个颗粒的纵横比、尺寸和表面粗糙度,深入洞察了颗粒间的相互作用。

研究结果

对界面相互作用的评估表明,颗粒的纵横比、表面粗糙度和相对表面粗糙度的增加会削弱颗粒之间产生的总相互作用能,并促进颗粒聚集。通过增加颗粒尺寸,预测颗粒间相互作用的能量会增加。在控制两个颗粒之间的界面能方面,凸度比比凸度数更有效。本研究结果可用于预测粗糙颗粒的相互作用,这在胶体系统中颗粒的凝聚或分散方面具有重要应用。

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