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本文引用的文献

1
Structures of ionic liquid-water mixtures investigated by IR and NMR spectroscopy.通过红外光谱和核磁共振光谱研究离子液体-水混合物的结构。
Phys Chem Chem Phys. 2014 May 28;16(20):9591-601. doi: 10.1039/c4cp00589a.
2
Extended scale for the hydrogen-bond basicity of ionic liquids.扩展的离子液体氢键碱性尺度。
Phys Chem Chem Phys. 2014 Apr 14;16(14):6593-601. doi: 10.1039/c3cp55285c. Epub 2014 Feb 26.
3
Effect of polyvalent ions in the formation of ionic-liquid-based aqueous biphasic systems.多价离子对离子液体双水相体系形成的影响。
J Phys Chem B. 2014 Jan 9;118(1):297-308. doi: 10.1021/jp411933a. Epub 2013 Dec 23.
4
Systematic study of the thermophysical properties of imidazolium-based ionic liquids with cyano-functionalized anions.氰基功能化阴离子的咪唑鎓基离子液体的热物理性质的系统研究。
J Phys Chem B. 2013 Sep 5;117(35):10271-83. doi: 10.1021/jp405913b. Epub 2013 Aug 26.
5
Aqueous biphasic systems: a boost brought about by using ionic liquids.双水相系统:离子液体带来的推动。
Chem Soc Rev. 2012 Jul 21;41(14):4966-95. doi: 10.1039/c2cs35151j. Epub 2012 Jun 12.
6
Role of the Hofmeister series in the formation of ionic-liquid-based aqueous biphasic systems.Hofmeister 系列在离子液体基双水相体系形成中的作用。
J Phys Chem B. 2012 Jun 21;116(24):7252-8. doi: 10.1021/jp300874u. Epub 2012 May 25.
7
Critical assessment of the formation of ionic-liquid-based aqueous two-phase systems in acidic media.酸性介质中离子液体双水相体系形成的关键评估。
J Phys Chem B. 2011 Sep 29;115(38):11145-53. doi: 10.1021/jp204865a. Epub 2011 Sep 6.
8
Extraction and determination of chloramphenicol in feed water, milk, and honey samples using an ionic liquid/sodium citrate aqueous two-phase system coupled with high-performance liquid chromatography.采用离子液体/柠檬酸钠双水相体系结合高效液相色谱法提取和测定水样、奶样和蜂蜜样中的氯霉素。
Anal Bioanal Chem. 2011 Jan;399(3):1295-304. doi: 10.1007/s00216-010-4376-2. Epub 2010 Nov 10.
9
Interactions of ionic liquids and water.离子液体与水的相互作用。
J Phys Chem B. 2010 Aug 19;114(32):10496-501. doi: 10.1021/jp1012736.
10
Extraction of biomolecules using phosphonium-based ionic liquids + K(3)PO(4) aqueous biphasic systems.使用基于鏻的离子液体+K₃PO₄双水相体系提取生物分子。
Int J Mol Sci. 2010 Apr 15;11(4):1777-91. doi: 10.3390/ijms11041777.

由离子液体和醋酸盐组成的双水相体系:相图、密度和粘度。

Aqueous biphasic systems composed of ionic liquids and acetate-based salts: phase diagrams, densities and viscosities.

作者信息

Quental Maria V, Passos Helena, Kurnia Kiki A, Coutinho João A P, Freire Mara G

机构信息

CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

J Chem Eng Data. 2015 Jun 11;60(6):1674-1682. doi: 10.1021/je501044u. Epub 2015 May 7.

DOI:10.1021/je501044u
PMID:28260810
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5332031/
Abstract

Ionic-liquid-based aqueous biphasic systems (IL-based ABS) have been largely investigated as promising extraction and purification routes. In this context, the determination of their phase diagrams and the physical properties of the coexisting phases are of high relevance when envisaging their large-scale applications. Low viscosities improve the mass transfer and reduce energy consumptions, while the knowledge on their densities is important for the equipment design. In this work, novel phase diagrams for aqueous solutions of imidazolium-based ILs combined with acetate-based salts, namely KCHCO or NaCHCO, are reported and discussed. The ability of the acetate-based salts to induce the phase separation not only depends on the ions hydration energy, but also on the concentration of "free" ions in solution. The tie-lines, tie-line lengths and critical points are also addressed. Experimental measurements of density and viscosity of the coexisting phases, for the different systems and at several compositions and temperatures, are additionally presented. The Othmer-Tobias and Bancroft equations are also applied to ascertain on the tie-lines coherence. It is here shown that low-viscous IL-based ABS, with a high difference in the densities of the coexisting phases, can be formed with organic and biodegradable salts thus offering enhanced features over conventional polymer-based systems.

摘要

基于离子液体的双水相体系(IL基ABS)作为一种有前景的萃取和纯化途径已得到大量研究。在此背景下,在设想其大规模应用时,确定其相图以及共存相的物理性质具有高度相关性。低粘度可改善传质并降低能耗,而了解其密度对于设备设计很重要。在这项工作中,报告并讨论了基于咪唑鎓的离子液体与醋酸盐(即KCHCO或NaCHCO)的水溶液的新型相图。醋酸盐诱导相分离的能力不仅取决于离子水合能,还取决于溶液中“游离”离子的浓度。还讨论了系线、系线长度和临界点。此外,还给出了不同体系在几种组成和温度下共存相的密度和粘度的实验测量值。还应用了奥思默-托拜厄斯方程和班克罗夫特方程来确定系线的一致性。结果表明,基于离子液体的低粘度双水相体系,其共存相的密度差异很大,可以由有机和可生物降解的盐形成,因此比传统的基于聚合物的体系具有更优越的特性。