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Droplet detachment in cross-flow membrane emulsification:Comparison among torque-and force-based models

机译:错流膜乳化中的液滴分离:基于扭矩和力的模型之间的比较

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Due to the high product quality achievable,considerable attention of the researchers is being addressed to the cross-flow direct membrane emulsification(CDME).The key advantages of this process over traditional technologies are a better control of the droplet sizes of the emulsion and its efficiency in terms of energy density requirement.In the literature,macroscopic models have been employed to describe the influence of process parameters and membrane properties on droplet formation.These models have been based either on an algebraic torque balance equation(TBE)or on a force balance(FBE)along a contact line,defined on the droplet pore border.The aim of this work is to compare the results obtained using these two approaches against experimental data available in literature in order to assess the reliability in predicting the correct trends with good quantitative agreement.The analysis shows that FBE yields better results than TBE under conditions of wall shear stress equal or larger than 7 Pa and membrane pore diameters below 1.5 mu m.In the mentioned conditions,using the FBE model,the maximum error in predictions is around 10%.Both methods reproduce the empirical relationship between droplet sizes and cross-flow velocities,although the force balance yields a better behaviour(plateau)for high wall shear stresses.However,the analysed models are unable to reproduce the linear relation between the droplet and pore size observed in the experiments.
机译:由于可以达到较高的产品质量,因此研究人员将注意力集中在错流直接膜乳化(CDME)上。与传统技术相比,该方法的关键优势是可以更好地控制乳液的液滴尺寸及其根据能量密度要求。文献中,使用宏观模型描述了工艺参数和膜性能对液滴形成的影响。这些模型基于代数扭矩平衡方程(TBE)或基于力沿接触线(在液滴孔边界上定义)进行平衡(FBE)。这项工作的目的是将这两种方法获得的结果与文献中提供的实验数据进行比较,以评估可靠地预测正确趋势的可靠性。分析表明,在壁剪应力等于或大于TBE的条件下,FBE比TBE产生更好的结果在7 Pa且膜孔径小于1.5μm的情况下。在上述条件下,使用FBE模型,预测的最大误差约为10%。两种方法均重现了液滴大小与横流速度之间的经验关系平衡对于高壁剪应力产生更好的行为(高原)。但是,所分析的模型无法重现实验中观察到的液滴与孔径之间的线性关系。

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