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Ionic liquids as additives to enhance the extraction of antioxidants in aqueous two-phase systems

机译:离子液体作为添加剂,可增强两相水溶液中抗氧化剂的提取

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Aqueous two-phase systems (ATPS) have been proposed as an alternative technique for the extraction, separation and/or purification of diverse biomolecules. Besides the typical polymer-salt ATPS, recently, ionic-liquid-(IL)-salt combinations have been reported to present higher extraction performances than the former systems are able to provide. Therefore, aiming at using the tailoring ability and high extraction efficiencies offered by ILs, yet with lower IL amounts, in this work novel ATPS composed of polyethylene glycol (PEG) and Na2SO4, using ILs as additives (at 5 or 10 wt%), were studied. Both the determination of the phase diagrams and their extraction efficiencies for gallic, vanillic and syringic acids were determined at 298 K. Furthermore, the effects of the molecular weight of PEG (200, 300,400 and 600 g mol~(-1)) and of the IL chemical structure were investigated. The two-phase formation ability increases with the increase of the PEG molecular weight. Moreover, the addition of low amounts of ILs is favorable for the liquid-liquid demixing. The results obtained indicate that all the antioxidants investigated preferentially partition for the PEG-rich phase although depending on the PEG molecular weight and IL employed. The addition of 5 wt% of IL leads to extraction efficiencies ranging between 80% and 99%. These results clearly demonstrate the ability of the IL to tune the polarity of the PEG-rich phase and where the IL chemical structure plays a dominant role in the extraction of phenolic acids. PEG-salt-IL ATPS represent thus an interesting advance in separation processes and open the door for a new range of IL-based extraction processes.
机译:已经提出了两相水相系统(ATPS)作为提取,分离和/或纯化各种生物分子的替代技术。除了典型的聚合物盐ATPS,最近,据报道离子-液体-(IL)-盐组合具有比以前的系统所能提供的更高的萃取性能。因此,为了利用IL的定制能力和较高的提取效率,但具有较低的IL量,在这项工作中,由聚乙二醇(PEG)和Na2SO4组成的新型ATPS,使用IL作为添加剂(5或10 wt%),被研究了。确定了在298 K时对没食子酸,香草酸和丁香酸的相图及其提取效率。此外,PEG(200、300,400和600 g mol〜(-1))的分子量和研究了IL的化学结构。两相形成能力随PEG分子量的增加而增加。而且,添加少量的IL对于液-液混合是有利的。获得的结果表明,所研究的所有抗氧化剂均优先分配到富含PEG的相中,尽管取决于所用的PEG分子量和IL。添加5 wt%的IL导致提取效率介于80%和99%之间。这些结果清楚地证明了IL调节富含PEG的相的极性的能力,并且IL的化学结构在酚酸的提取中起主要作用。因此,PEG-盐-IL ATPS代表了分离过程中的一项有趣进展,并为基于IL的新提取过程打开了大门。

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