Dehghanghadikolaei Amir, Shahbaznezhad Mohcen, Abdul Halim Bilal, Sojoudi Hossein
Department of Mechanical, Industrial, and Manufacturing, The University of Toledo, Toledo, Ohio 43615, United States.
Department of Electrical Engineering and Computer Science, The University of Toledo, Toledo, Ohio 43615, United States.
ACS Omega. 2022 Feb 18;7(8):7045-7056. doi: 10.1021/acsomega.1c06765. eCollection 2022 Mar 1.
Electroemulsification methods use electrohydrodynamic (EHD) forces to manipulate fluids and droplets for emulsion formation. Here, a top-down method is presented using a contactless corona discharge for simultaneous emulsion formation and its pumping/collection. The corona discharge forms using a sharp conductive electrode connected to a high-voltage source that ionizes water vapor droplets (formed by a humidifier) and creates an ionic wind (electroconvection), dragging them into an oil medium. The nonuniform electric field induced by the corona discharge also drives the motion of the oil medium via an EHD pumping effect utilizing a modulated bottom electrode geometry. By these two effects, this contactless method enables the immersion of the water droplets into the moving oil medium, continuously forming a water-in-oil (W/O) emulsion. The impact of corona discharge voltage, vertical and horizontal distances between the two electrodes, and depth of the silicone oil on sizes of the formed emulsions is studied. This is a low-cost and contactless process enabling the continuous formation of the W/O emulsions.
电乳化方法利用电流体动力学(EHD)力来操控流体和液滴以形成乳液。在此,提出了一种自上而下的方法,该方法使用非接触式电晕放电来同时形成乳液及其泵送/收集。电晕放电通过连接到高压源的尖锐导电电极形成,该电极使(由加湿器形成的)水蒸气液滴电离并产生离子风(电对流),将它们拖入油介质中。电晕放电产生的非均匀电场还通过利用调制的底部电极几何形状的EHD泵送效应来驱动油介质的运动。通过这两种效应,这种非接触式方法能够使水滴浸入移动的油介质中,持续形成油包水(W/O)乳液。研究了电晕放电电压、两个电极之间的垂直和水平距离以及硅油深度对所形成乳液尺寸的影响。这是一种低成本的非接触式过程,能够持续形成W/O乳液。