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泡沫分离应用。

Foam fractionation applications.

机构信息

Biochemical and Chemical Engineering, TU Dortmund, Emil-Figge-Str. 70, 44227 Dortmund, Germany.

出版信息

J Biotechnol. 2012 Oct 15;161(2):126-37. doi: 10.1016/j.jbiotec.2012.03.008. Epub 2012 Mar 29.

Abstract

Biotechnological downstream processing faces several challenges, such as dilute product streams and contained target products which are sensitive to heat, oxidation, other chemicals, etc. State-of-the-art separation methods, e.g. chromatography, are not always the best option due to variable yield losses and high costs. Foam fractionation appears as a promising alternative unit operation in biotechnological downstream processing. From its applications in metal industry and on fish farms, it was developed further towards the recovery of phytonutrients, metabolites and proteins. However, no large scale applications of foam fractionation in biotechnological downstream processing exist yet. This is due to the complexity of various biotechnological media, which makes a universalized approach for systematic process design of protein separations difficult. Ongoing research in the fields of process engineering, surface chemistry and protein chemistry can help to close this gap. Although many different substances, such as detergents, have been separated or recovered using foam fractionation, this review focuses mainly on biotechnological applications, more specifically on protein separation.

摘要

生物技术下游加工面临着一些挑战,例如产品流稀释和包含对热、氧化等化学品敏感的目标产品。最先进的分离方法,如色谱法,由于产量损失和成本高,并不总是最佳选择。泡沫分离作为生物技术下游加工中一种很有前途的单元操作。从它在金属工业和鱼类养殖场的应用,进一步发展为回收植物营养素、代谢物和蛋白质。然而,泡沫分离在生物技术下游加工中的大规模应用尚未实现。这是由于各种生物技术介质的复杂性,使得蛋白质分离的系统过程设计的通用方法变得困难。目前在过程工程、表面化学和蛋白质化学领域的研究可以帮助缩小这一差距。虽然许多不同的物质,如洗涤剂,已经使用泡沫分离进行分离或回收,但本综述主要集中在生物技术应用上,更具体地说是蛋白质分离。

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