Droplet charge-to-mass ratio measurement in an EHD liquid-liquid extraction system

W. He, J. Chang, M. Baird
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引用次数: 5

Abstract

An experimental investigation has been carried out in a rectangular lucite cell equipped with parallel electrode plates along the two sides of the cell. The droplets are formed at a grounded hollow electrode. Distilled water is used as the droplet phase and a viscous mineral oil is used as the continuous phase. Experiments have been conducted at various flow rates of the dispersed phase with quiescent continuous phase; the applied DC voltage is from 0 to 15 kV. Charge acquired on droplets both at the hollow electrode and downstream near the bottom of the cell was observed from hollow electrode current waveforms and by a Faraday-cup through direct sampling, respectively. The results reported from the present investigation, extending from the single discrete droplet regime (at low applied voltage) to the dispersed multidroplet regime (at high applied voltage), indicate that the modified Rayleigh instability model and the Vonnegut and Neubauer model can predict the maximum droplet charge acquired in liquid-liquid systems. The modified Vonnegut model can predict most of the experimental results when the applied electric field is high enough and EHD (electrohydrodynamic) forces become dominant.<>
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EHD液-液萃取系统中液滴电荷质量比的测量
在矩形硅树脂电池中,沿电池两侧安装平行电极板,进行了实验研究。液滴在接地的空心电极上形成。液滴相采用蒸馏水,连续相采用粘性矿物油。在不同流速下进行了分散相与静止连续相的实验;施加的直流电压为0 ~ 15kv。通过直接采样,分别从空心电极电流波形和法拉第杯观察到空心电极和靠近电池底部的下游液滴上获得的电荷。从单离散液滴(低电压)到分散的多液滴(高电压)的研究结果表明,改进的瑞利不稳定性模型和冯内古特和纽鲍尔模型可以预测液-液体系中获得的最大液滴电荷。当外加电场足够大且电流体动力占主导地位时,修正的Vonnegut模型可以预测大部分实验结果。
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