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Present state and perspective of downstream processing of biologically produced 1,3-propanediol and 2,3-butanediol

机译:生物生产的1,3-丙二醇和2,3-丁二醇的下游加工的现状和前景

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摘要

1,3-Propanediol and 2,3-butanediol are two promising chemicals which have a wide range of applications and can be biologically produced. The separation of these diols from fermentation broth makes more than 50% of the total costs in their microbial production. This review summarizes the present state of methods studied for the recovery and purification of biologically produced diols, with particular emphasis on 1,3-propoanediol. Previous studies on the separation of 1,3-propanediol primarily include evaporation, distillation, membrane filtration, pervaporation, ion exchange chromatography, liquid–liquid extraction, and reactive extraction. Main methods for the recovery of 2,3-butanediol include steam stripping, pervaporation, and solvent extraction. No single method has proved to be simple and efficient, and improvements are especially needed with regard to yield, purity, and energy consumption. Perspectives for an improved downstream processing of biologically produced diols, especially 1,3-propanediol are discussed based on our own experience and recent work. It is argued that separation technologies such as aqueous two-phase extraction with short chain alcohols, pervaporation, reverse osmosis, and in situ extractive or pervaporative fermentations deserve more attention in the future.
机译:1,3-丙二醇和2,3-丁二醇是两种有前途的化学品,具有广泛的应用范围并且可以生物生产。从发酵液中分离这些二醇,占微生物生产总成本的50%以上。这篇综述总结了用于生物生产的二醇的回收和纯化的研究方法的现状,特别着重于1,3-丙二醇。以前有关1,3-丙二醇分离的研究主要包括蒸发,蒸馏,膜过滤,全蒸发,离子交换色谱,液-液萃取和反应性萃取。回收2,3-丁二醇的主要方法包括蒸汽汽提,全蒸发和溶剂萃取。没有一种方法被证明是简单有效的,特别是在产量,纯度和能耗方面都需要改进。根据我们自己的经验和最近的工作,讨论了改善生物生产的二醇(尤其是1,3-丙二醇)下游加工的前景。有人认为,分离技术,例如用短链醇进行的水相两相萃取,全蒸发,反渗透以及原位萃取或全蒸发发酵,在未来值得关注。

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