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Ionic liquid-based aqueous two-phase extraction within a microchannel system

机译:微通道系统中基于离子液体的两相水相萃取

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Ionic liquid-based aqueous two-phase systems (IL-ATPSs) are great candidates for the replacement of volatile organic solvents in liquid-liquid extractions. Besides, microfluidic separation techniques are a promising alternative to conventional systems since they provide continuous operation, better performance and easier capacity increase by a numbering-up approach. Herein, the advantages of IL-ATPSs and microfluidic continuous separation were combined within a microfluidic device with parallel flow allowing for the separation of the two phases at the exit of the microchannel. An aqueous solution of [C4mim] [BF4] and D-fructose was used as an IL-ATPS and compared with a conventional ATPS consisted of polyethylene glycol/salt solution. Based on the evaluated partitioning coefficient of a model substance, namely bovine serum albumin, the ionic liquid concentration and pH value of the IL-ATPS have been selected for the use within a pressure-driven microchannel system with y-shaped inlet and outlet. Furthermore, a three-dimensional model considering convection in the flow direction and diffusion in all spatial directions at steady-state conditions was developed, validated by experimental results and used to assess the feasibility of micro-scale parallel flow extraction in a wide range of flow rates. The chosen IL-ATPS was shown to be much more efficient media for continuous microfluidic extraction as compared to conventional ATPS, primarily due to much lower dynamic viscosity of IL-rich phase related to PEG-rich phase.
机译:基于离子液体的水性两相系统(IL-ATPS)是替代液-液萃取中挥发性有机溶剂的理想选择。此外,微流体分离技术是常规系统的有希望的替代方法,因为它们通过编号方法提供了连续操作,更好的性能和更容易的容量增加。在本文中,IL-ATPS和微流体连续分离的优点在微流体装置中以平行流动相结合,从而允许在微通道出口处分离两相。 [C4mim] [BF4]和D-果糖的水溶液用作IL-ATPS,并与由聚乙二醇/盐溶液组成的常规ATPS进行比较。基于评估的模型物质(即牛血清白蛋白)的分配系数,已选择IL-ATPS的离子液体浓度和pH值,以在带有y形入口和出口的压力驱动微通道系统中使用。此外,建立了在稳态条件下考虑流动方向上的对流和在所有空间方向上的扩散的三维模型,并通过实验结果进行了验证,并用于评估在大流量范围内进行微型平行流提取的可行性费率。与常规的ATPS相比,选择的IL-ATPS被证明是用于连续微流体萃取的高效得多的介质,这主要是由于与富含PEG的相有关的富含IL的相的动态粘度低得多。

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