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Redistribution and Removal of Particles from Drop Surfaces

机译:从液滴表面重新分布和去除颗粒

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It was recently shown by us that particles distributed on the surface of a drop can be concentrated at the poles or equator of the drop by subjecting the latter to a uniform electric field. In this paper, we present experimental results for the dependence of the dielectrophoretic force on the parameters of the system such as the particles' and drop's radii and the dielectric properties of the fluids and particles, and define a dimensionless parameter regime for which the technique can work. Specifically, we show that if the drop radius is larger than a critical value, that depends on the physical properties of the drop and ambient fluids and the particles, it is not possible to concentrate particles and thus clean the drop of the particles it carries at its surface because the drop breaks or tip-streams at an electric field intensity smaller than that needed for concentrating particles. However, since the dielectrophoretic force varies inversely with the drop radius, the effectiveness of the concentration mechanism increases with decreasing drop size, and therefore the technique is guaranteed to work provided the drop radius is sufficiently small.
机译:我们最近表明,通过使液滴经受均匀的电场,可将分布在液滴表面的粒子集中在液滴的极点或赤道上。在本文中,我们给出了介电泳力对系统参数(如粒子和液滴的半径以及流体和粒子的介电特性)的依赖性的实验结果,并定义了无量纲的参数体系,该技术可用于工作。具体而言,我们表明,如果墨滴半径大于临界值(取决于墨滴和周围流体以及颗粒的物理特性),则不可能浓缩颗粒并因此清洁其携带的颗粒的墨滴它的表面是因为液滴在电场强度小于浓缩粒子所需的电场强度下破裂或流向尖端。但是,由于介电泳力与液滴半径成反比,因此随着液滴尺寸的减小,集中机制的有效性增加,因此,只要液滴半径足够小,就可以保证该技术的有效性。

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