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Stable Horizontal Interface Formation and Separation of a Water/Oil Flow by Microfluidic Reactor Analyzed by Direct Observation and Numerical Simulation

机译:直接观察和数值模拟分析微流控反应器稳定的水平界面形成和油水流分离

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A microfluidic system with a wide surface area per unit volume has the potential for use in highly efficient chemical synthesis, separation, and extraction. In the case of efficient water/oil separation and material extraction, it becomes important to form a stable two-layer laminar flow interface. Previously, we developed a silicon/glass microfluidic reactor, in which microchannel inner walls were modified to produce hydrophilic/hydrophobic surface. In this work, flow behavior and separation of this microreactor was evaluated. This microfluidic chip made it possible to form a stable twolayer laminar flow interface between a flow of heavier water and lighter hexane, which were introduced into the upper and lower inlets, respectively. The efficiency in separation was examined using water and hexane. Under certain conditions including the pressure difference between the two outlet surfaces, complete phase separation was achieved. This result indicates that the highly efficient separation and stable interface formed by this microfluidic chip can be applied to immiscible liquid-liquid operations with the complete separation of the liquids at the outlets.
机译:具有每单位体积大表面积的微流体系统具有用于高效化学合成,分离和提取的潜力。在有效的水/油分离和物料提取的情况下,形成稳定的两层层流界面非常重要。以前,我们开发了一种硅/玻璃微流体反应器,其中微通道内壁经过修饰以产生亲水/疏水表面。在这项工作中,评估了该微反应器的流动行为和分离。该微流体芯片使得在重水和轻己烷的流动之间形成稳定的双层流界面成为可能,所述流动分别被引入到上部和下部入口中。使用水和己烷检查分离效率。在某些条件下,包括两个出口表面之间的压差,可以实现完全的相分离。该结果表明,由该微流体芯片形成的高效分离和稳定的界面可以应用于在出口处完全分离液体的不混溶的液-液操作。

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