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Journal ArticleDOI

Aqueous biphasic systems: a boost brought about by using ionic liquids

TLDR
A critical review provides a judicious assessment of the available literature on ionic-liquid-based Aqueous Biphasic Systems and addresses two of the main applications of ionic liquid-based ABS: extraction of biomolecules and other added-value compounds, and their use as alternative approaches for removing and recovering ionic liquids from aqueous media.
Abstract
During the past decade, ionic-liquid-based Aqueous Biphasic Systems (ABS) have been the focus of a significant amount of research. Based on a compilation and analysis of the data hitherto reported, this critical review provides a judicious assessment of the available literature on the subject. We evaluate the quality of the data and establish the main drawbacks found in the literature. We discuss the main issues which govern the phase behaviour of ionic-liquid-based ABS, and we highlight future challenges to the field. In particular, the effect of the ionic liquid structure and the various types of salting-out agents (inorganic or organic salts, amino acids and carbohydrates) on the phase equilibria of ABS is discussed, as well as the influence of secondary parameters such as temperature and pH. More recent approaches using ionic liquids as additives or as replacements for common salts in polymer-based ABS are also presented and discussed to emphasize the expanding number of aqueous two-phase systems that can actually be obtained. Finally, we address two of the main applications of ionic liquid-based ABS: extraction of biomolecules and other added-value compounds, and their use as alternative approaches for removing and recovering ionic liquids from aqueous media.

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Citations
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Journal ArticleDOI

Biological Activity of Ionic Liquids and Their Application in Pharmaceutics and Medicine.

TL;DR: The accumulated data on the biological activity of ionic liquids, including their antimicrobial and cytotoxic properties, are discussed in view of possible applications in drug synthesis and drug delivery systems.
Journal ArticleDOI

Ionic-Liquid-Mediated Extraction and Separation Processes for Bioactive Compounds: Past, Present, and Future Trends

TL;DR: The key accomplishments and future challenges to the field are discussed, with particular emphasis on the major lacunas found within the IL community dedicated to separation processes and by suggesting some steps to overcome the current limitations.
Journal ArticleDOI

Supercritical fluid extraction of bioactive compounds

TL;DR: In this paper, an analytical overview regarding the application of supercritical fluids in the extraction of bioactive compounds and their operative extraction conditions, along with the investigation of further improvements on the extraction efficiency and the applied techniques for the structural characterization and identification of such bio-active compounds are presented.
Journal ArticleDOI

Principles, techniques, and applications of biocatalyst immobilization for industrial application

TL;DR: This review focuses on most commonly used immobilization techniques in industry with many recent applications including using bioreactor systems for industrial production.
Journal ArticleDOI

General Principles and Strategies for Salting-Out Informed by the Hofmeister Series

TL;DR: The power of this approach is exemplified by the aqueous workup of a highly water-soluble nucleoside in which the use of sodium sulfate allowed for high recoveries without relying on back extraction.
References
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Journal ArticleDOI

The distillation and volatility of ionic liquids

TL;DR: It is demonstrated that some selected families of commonly used aprotic ionic liquids can be distilled at 200–300 °C and low pressure, with concomitant recovery of significant amounts of pure substance, will permit these currently excluded applications to be realized.
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Controlling the aqueous miscibility of ionic liquids: aqueous biphasic systems of water-miscible ionic liquids and water-structuring salts for recycle, metathesis, and separations.

TL;DR: Hydrophilic ionic liquids can be salted-out and concentrated from aqueous solution upon addition of kosmotropic salts forming aqueously biphasic systems as illustrated by the phase behavior of mixtures of 1-butyl-3-methylimidazolium chloride and K3PO4.
Journal ArticleDOI

Toxicity and antimicrobial activity of imidazolium and pyridinium ionic liquids

TL;DR: This research provides toxicity and antimicrobial information about ILs, prior to their widespread use and release, to aid in the prevention of pollution, and avoid costs of future clean-up, and provide information about the “green” nature of practical industrial solvents.
Journal ArticleDOI

Significance of antibiotics in the environment

TL;DR: This document is intended to be used for educational purposes only and should not be relied on as a guide for making decisions about major decisions about copyrighted material.
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