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Influence of nonwetting on the aggregation dynamics of micronic solid particles in a turbulent medium

机译:不润湿对湍流介质中微细固体颗粒聚集动力学的影响

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The aim of this work was to determine and to interpret the influence of nonwetting on the aggregation dynamics of micronic solid particles in a turbulent medium. Two silica granular samples were studied: one was naturally hydrophilic; the other was made hydrophobic. Aggregation in an aqueous ethanol solution was followed by in situ turbidimetry. The influence of stirring rate and deaeration was determined. Aggregates of hydrophilic particles were small and fragile, whereas aggregates of hydrophobic particles were large and solid. Moreover, they differred greatly in optical properties. Within the proposed approach, different features of the aggregate morphology were identified: fractal dimension, maximum size, and gas content of the hydrophobic clusters. These elements are taken into account in the models of aggregation dynamics proposed here. (c) 2004 Elsevier lnc. All rights reserved.
机译:这项工作的目的是确定和解释非润湿对湍流介质中微细固体颗粒聚集动力学的影响。研究了两个二氧化硅颗粒样品:一个是天然亲水性的;另一个是天然亲水性的。另一个被制成疏水性的。在乙醇水溶液中聚集之后,进行原位比浊法。确定搅拌速率和脱气的影响。亲水颗粒的聚集体小而易碎,而疏水颗粒的聚集体大而固体。而且,它们的光学性质差异很大。在提出的方法中,确定了聚集体形态的不同特征:疏水簇的分形维数,最大尺寸和气体含量。在这里提出的聚集动力学模型中考虑了这些要素。 (c)2004 Elsevier lnc。版权所有。

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