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离子液体用于两相系统及其在纯化、萃取和生物催化中的应用。

Ionic liquids for two-phase systems and their application for purification, extraction and biocatalysis.

机构信息

Department of Chemistry, Universtiy of Rostock, Germany.

出版信息

Appl Microbiol Biotechnol. 2011 Feb;89(3):493-9. doi: 10.1007/s00253-010-2933-4. Epub 2010 Oct 16.

Abstract

The development of biotechnological processes using novel two-phase systems based on molten salts known as ionic liquids (ILs) got into the focus of interest. Many new approaches for the beneficial application of the interesting solvent have been published over the last years. ILs bring beneficial properties compared to organic solvents like nonflammability and nonvolatility. There are two possible ways to use the ILs: first, the hydrophobic ones as a substitute for organic solvents in pure two-phase systems with water and second, the hydrophilic ones in aqueous two-phase systems (ATPS). To effectively utilise IL-based two-phase systems or IL-based ATPS in biotechnology, extensive experimental work is required to gain the optimal system parameters to ensure selective extraction of the product of interest. This review will focus on the most actual findings dealing with the basic driving forces for the target extraction in IL-based ATPS as well as presenting some selected examples for the beneficial application of ILs as a substitute for organic solvents. Besides the research focusing on IL-based two-phase systems, the "green aspect" of ILs, due to their negligible vapour pressure, is widely discussed. We will present the newest results concerning ecotoxicity of ILs to get an overview of the state of the art concerning ILs and their utilisation in novel two-phase systems in biotechnology.

摘要

利用新型两相体系(即熔融盐,也称为离子液体(ILs))开发生物技术工艺已成为关注焦点。近年来,许多有益应用这种有趣溶剂的新方法已经发表。与有机溶剂相比,ILs 具有非可燃性和非挥发性等有益特性。使用 ILs 有两种可能的方法:首先,疏水性 ILs 可替代有机溶剂,用于与水形成的纯两相体系;其次,亲水性 ILs 可用于两相体系(ATPS)。为了在生物技术中有效地利用基于 IL 的两相体系或基于 IL 的 ATPS,需要进行广泛的实验工作,以获得最佳的系统参数,以确保有选择性地提取目标产物。本文综述将重点介绍基于 IL 的 ATPS 中目标萃取的基本驱动力的最新研究结果,以及 IL 作为有机溶剂替代品的一些有益应用实例。除了关注基于 IL 的两相体系的研究外,由于其蒸气压可忽略不计,IL 的“绿色方面”也得到了广泛讨论。我们将介绍有关 IL 生态毒性的最新研究结果,以全面了解 IL 及其在生物技术中新型两相体系中的应用的最新进展。

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