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Evaporation of an emulsion trapped in a yield stress fluid

机译:滞留在屈服应力流体中的乳液的蒸发

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The present work deals with emulsions of volatile alkalies in an aqueous clay suspension, Laponite, which forms a yield stress fluid. For a large enough yield stress (i.e. Laponite concentration), the oil droplets are prevented from creaming and the emulsions are thus mechanically stabilized. We have studied the evaporation kinetics of the oil phase of those emulsions in contact with the atmosphere. We show that the evaporation process is characterized by the formation of a sharp front separating the emulsion from a droplet-free Laponite phase, and that the displacement of the front vs. time follows a diffusion law. Experimental data are confronted to a diffusion-controlled model, in the case where the limiting step is the diffusion of the dissolved oil through the aqueous phase. The nature of the alkane, as well as its volume fraction in the emulsion, has been varied. Quantitative agreement with the model is achieved without any adjustable parameter and we describe the mechanism leading to the formation of a front.
机译:本工作涉及在粘土悬浮液Laponite中的挥发性碱的乳状液,形成了屈服应力流体。对于足够大的屈​​服应力(即锂皂石浓度),可防止油滴乳化,从而使乳液机械稳定。我们已经研究了与大气接触的那些乳液的油相的蒸发动力学。我们表明,蒸发过程的特征是形成了锋利的前沿,将乳液与无滴的皂石相分离,并且前沿的位移随时间变化遵循扩散定律。在极限步骤是溶解油通过水相扩散的情况下,实验数据面临扩散控制模型。烷烃的性质及其在乳液中的体积分数已发生变化。在没有任何可调整参数的情况下实现了与模型的定量一致性,我们描述了导致前沿形成的机制。

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