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AC and DC-Currents for Separation of Nano-Particles by External Electric Field

机译:交流电和直流电通过外电场分离纳米颗粒

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摘要

An attractive technique is carried out by electrical phenomena to demulsify benzene in water emulsion. In this study, non-unifonn electric field is applied to remove benzene particles which have been transferred to the water (oil/water-emulsion), Electric current leads to move oil particles in emulsion contact each other and also create bigger oil drops by induction of negative charge, then the oil moves upward due to density difference and can be measured. Based on these experiments, about 80 % benzene demulsify from the emulsion in lower than 10 min, which indicates that the mutual contact of oil droplets through thin water layers in necessary for the rapid demulsification. AH this evidence strongly suggests that the applied electric field causes the rearrangement of surface charges on oil droplets, which results in the reduction of the height of an energy barrier for the coalescence of the droplets. In the present paper, benzene is used as disperse phase and water is used as continuous phase. The effective benzene-particles sizes in water are determined by atomic force microscope (AFM) about 90 nm.
机译:通过电现象进行的有吸引力的技术使水中的苯破乳。在这项研究中,非Unifonn电场用于去除已转移到水中的苯颗粒(油/水乳液),电流导致乳液中的油颗粒彼此接触并通过感应产生更大的油滴负电荷发生变化后,由于密度差,油会向上移动并可以测量。根据这些实验,在不到10分钟的时间内,约80%的苯从乳液中破乳,这表明油滴通过薄水层相互接触是快速破乳所必需的。所有这些证据都强烈表明,施加的电场会导致油滴表面电荷的重排,从而导致液滴聚结的能垒高度降低。在本文中,苯用作分散相,水用作连续相。通过原子力显微镜(AFM)确定约90 nm的水中有效苯颗粒尺寸。

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