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用于经济高效生物/表面活性剂回收的原位下游策略。

In situ downstream strategies for cost-effective bio/surfactant recovery.

作者信息

Najmi Ziba, Ebrahimipour Gholamhossein, Franzetti Andrea, Banat Ibrahim M

机构信息

Faculty of Biological Science and Technology, Department of Microbiology and Microbial Biotechnology, University of Shahid Beheshti, Tehran, Iran.

Department of Environmental Sciences, University of Milano-Bicocca, Milan, Italy.

出版信息

Biotechnol Appl Biochem. 2018 Jul;65(4):523-532. doi: 10.1002/bab.1641. Epub 2018 Feb 21.

Abstract

Since 60-80% of total costs of production are usually associated with downstream collection, separation, and purification processes, it has become advantageous to investigate how to replace traditional methods with efficient and cost-effective alternative techniques for recovery and purification of biosurfactants. In the traditional techniques, large volumes of organic solvents are usually used for increasing production cost and the overall environmental burden. In addition, traditional production and separation methods typically carried out in batch cultures reduce biosurfactant yields due to product inhibition and lower biosurfactants activity as a result of interaction with the organic solvents used. However, some in situ recovery methods that allow continuous separation of bioproducts from culture broth leading to an improvement in yield production and fermentation efficiency. For biosurfactants commercialization, enhancement of product capacity of the separation methods and the rate of product removal is critical. Recently, interest in the integration of separation methods with a production step as rapid and efficient techniques has been increasing. This review focuses on the technology gains and potentials for the most common methods used in in situ product removal: foam fractionation and ultrafiltration, especially used to recover and purify two well-known biosurfactants: glycolipids (rhamnolipids) and lipopeptides (surfactins).

摘要

由于生产总成本的60%-80%通常与下游的收集、分离和纯化过程相关,因此研究如何用高效且经济高效的替代技术取代传统方法来回收和纯化生物表面活性剂已变得具有优势。在传统技术中,通常使用大量有机溶剂,这增加了生产成本和整体环境负担。此外,传统的生产和分离方法通常在分批培养中进行,由于产物抑制以及与所用有机溶剂相互作用导致生物表面活性剂活性降低,从而降低了生物表面活性剂的产量。然而,一些原位回收方法能够从培养液中连续分离生物产物,从而提高产量和发酵效率。对于生物表面活性剂的商业化而言,提高分离方法的产物处理能力和产物去除速率至关重要。近来,将分离方法与生产步骤整合为快速高效技术的兴趣日益增加。本综述聚焦于原位产物去除中最常用方法(泡沫分离法和超滤法)的技术优势和潜力,这两种方法尤其用于回收和纯化两种知名的生物表面活性剂:糖脂(鼠李糖脂)和脂肽(表面活性素)。

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