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Experimental and numerical investigation of electrostatic spray liquid-liquid extraction with ionic liquids

机译:离子液体静电喷雾液液萃取的实验与数值研究

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A new concept of an electrostatic spray column for liquid-liquid extraction was investigated. An important problem for separation processes is the presence of azeotropic or close-boiling mixtures in their production, for example heptane with ethanol, since the separation is impossible by ordinary distillation. The use of ionic liquids (IL) as a dispersed solvent specially engineered for any specific organic mixture in terms of selectivity is a key factor to successful separation. As IL present particularly attractive combination of favorable characteristics for the separation of heptane and ethanol, in this work we use 1-butyl-3-methylimidazolium methyl sulfate [BMIM][MeSO4]. Because of high viscosity and relatively high cost of IL a new technique was introduced, consisting in the electrostatically spray generation to enhance the mass transport between the phases. In order to optimally design the geometry of the contactor a series of numerical simulation was performed. Especially multi-nozzle variants for better exploitation of contactor volume were investigated. Experiments showed excellent possibility of control of the dispersion characteristics by applied voltage and thus control of the rate of extraction. The preliminary simulations based on our mathematical model for a three nozzle variant exhibited visual agreement with the theory of electrostatics.
机译:研究了用于液-液萃取的静电喷雾柱的新概念。分离过程的一个重要问题是在生产过程中存在共沸或紧密沸腾的混合物,例如庚烷和乙醇,因为常规蒸馏无法分离。就选择性而言,使用离子液体(IL)作为专为任何特定有机混合物设计的分散溶剂是成功分离的关键因素。由于IL表现出特别有吸引力的分离庚烷和乙醇的良好特性,因此在本研究中,我们使用1-丁基-3-甲基咪唑甲基硫酸甲酯[BMIM] [MeSO4]。由于IL的高粘度和相对较高的成本,因此引入了一种新技术,该技术包括产生静电喷雾以增强相之间的质量传递。为了优化设计接触器的几何形状,进行了一系列数值模拟。为了更好地利用接触器体积,特别研究了多喷嘴变型。实验表明极有可能通过施加电压来控制分散特性,从而控制萃取速率。根据我们的数学模型对三个喷嘴进行的初步模拟显示出与静电理论的视觉一致性。

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