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Leakage and swell in emulsion liquid membrane systems: Comparing continuous stirred-tank reactor and batch experiments

机译:乳液液膜系统泄漏和膨胀:比较连续搅拌罐反应器和批量实验

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Emulsion liquid membrane (ELM) systems can efficiently extract and concentrate dilute solutes in a variety of applications and chemistries. Internal phase leakage and swell reduce extraction efficiency and concentration, which limits their use. Nearly all studies of ELM leakage and swell have been conducted in batch systems, although continuous flow systems are preferred for industrial applications. The objective of this investigation was to assess the ability of batch experiments to predict continuous system performance with respect to internal phase leakage and swell. The effects of five factors (surfactant concentration, osmotic pressure, membrane viscosity, internal phase volume fraction, and extraction vessel stir rate) on leakage and swell were measured in a continuous stirred-tank reactor (CSTR) system without solute extraction. The results were compared with those reported previously for a batch system with the same experimental conditions and vessel geometry. Overall, the effects of the five factors in the CSTR system are qualitatively consistent with the batch system observations, suggesting that the influential variables in the batch system are similarly influential in the CSTR system. Leakage and swell in the CSTR and batch systems are correlated with similar amounts of swell in both systems but consistently smaller leakage in the CSTR configuration. (C) 2020 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:乳液液体膜(ELM)系统可以有效地提取和浓缩各种应用和化学物质中的稀释溶质。内部相位泄漏并膨胀降低了提取效率和浓度,这限制了它们的使用。几乎所有对钢管泄漏和膨胀的研究都是在批量系中进行的,尽管连续流量系统是用于工业应用的连续流动系统。本研究的目的是评估批量实验能力,以预测相对于内部曝光和膨胀的连续系统性能。在不溶质萃取的连续搅拌罐反应器(CSTR)系统中测量五种因素(表面活性剂浓度,渗透压,膜粘度,内部体积分数和提取容器搅拌速率)的效果。将结果与前面报道的批量系统的结果进行了比较,具有相同的实验条件和血管几何形状。总体而言,CSTR系统中五种因素的效果与批量系统观察质量符合,表明批处理系统中的有影响变量在CSTR系统中同样有影响力。 CSTR和批量系统中的泄漏和膨胀与两个系统中的相似量的膨胀量相关,而是在CSTR配置中始终较小的泄漏。 (c)2020朝鲜工业与工程化学学会。 elsevier b.v出版。保留所有权利。

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