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Microfluidic Study of the Electrocoalescence of Aqueous Droplets in Crude Oil

机译:原油中水滴电凝聚的微流控研究

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In electrocoalescence, an electric field is applied to a dispersion of conducting water droplets in a poorly conducting oil to force the droplets to merge in the direction of the field. Electrocoalescence is used in petroleum refining to separate water from crude oil and in droplet-based microfluidics to combine droplets of water in oil and to break emulsions. Using a microfluidic design to generate a two-dimensional (2D) emulsion, we demonstrate that electrocoalescence in an opaque crude oil can be visualized with optical microscopy and studied on an individual droplet basis in a chamber whose height is small enough to make the dispersions two dimensional and transparent. From reconstructions of images of the 2D electrocoalescence, the electrostatic forces driving the droplet merging are calculated in a numerically exact manner and used to predict observed coalescence events. Hence, the direct simulation of the electrocoalescence-driven breakdown of 2D emulsions in microfluidic devices can be envisioned.
机译:在电聚结中,将电场施加到导电水滴在导电不良的油中的分散体上,以迫使液滴在电场方向上合并。电凝聚用于炼油以将水从原油中分离出来,并用于基于液滴的微流控系统中,以将油中的水滴合并并破坏乳液。使用微流体设计生成二维(2D)乳液,我们证明了不透明原油中的电凝聚可以通过光学显微镜观察,并在高度足够小以使分散液为两种的小室中以单个液滴为基础进行研究。尺寸透明。从二维电凝聚图像的重建中,以数字精确的方式计算驱动液滴合并的静电力,并将其用于预测观察到的凝聚事件。因此,可以设想在微流体装置中电凝聚驱动的二维乳剂分解的直接模拟。

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