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利用谷氨酸棒杆菌固定化发酵生产 L-赖氨酸的生物反应器设计策略。

Strategy for the design of a bioreactor for L-lysine immobilized fermentation using Corynebacterium glutamicum.

机构信息

Ningxia Yipin Biotechnology Co. Ltd, Yinchuan, China.

Nanjing Hi-Tech Biological Technology Research Institute Co. Ltd, Nanjing, China.

出版信息

Appl Microbiol Biotechnol. 2022 Sep;106(17):5449-5458. doi: 10.1007/s00253-022-12103-w. Epub 2022 Jul 29.

Abstract

Biofilm-immobilized fermentation is a novel strategy that has been utilized in L-lysine fermentation. In this study, we describe a strategy for designing bioreactors for immobilized fermentation. We have constructed steel structures in which the carriers can be sewn, forming several star-like structures with different angles, and changing the ventilation robot to the aeration tray. In a 10-L bioreactor, this structure with 12 angles assisted the immobilized system to remedy the gap between free-cell and immobilized fermentation in the conversion rate. In a 50-L bioreactor, this enlarged structure with 16 angles illustrated a 4.61% higher conversion rate than the free-cell fermentation (67.75%) and increased the production by 28.56%. This successful case is the first step towards to industrial production of biofilm-based immobilized fermentation.Key points• The designed steel structure is useful for L-lysine immobilized fermentation in a 10-L bioreactor.• The conversion rate of immobilized fermentation increased from 13.99 to 60.07% and is 1.03% higher than that of the free-cell fermentation.• The conversion rate of the redesigned 50-L bioreactor is higher than that of free-cell fermentation.

摘要

生物膜固定化发酵是一种新型策略,已应用于 L-赖氨酸发酵中。本研究描述了一种用于固定化发酵的生物反应器设计策略。我们构建了钢质结构,可以在其中缝制载体,形成具有不同角度的几个星形结构,并将通风机器人更换为通气盘。在 10L 生物反应器中,这种具有 12 个角度的结构有助于固定化系统弥补游离细胞和固定化发酵之间的转化率差距。在 50L 生物反应器中,这种放大结构具有 16 个角度,转化率比游离细胞发酵(67.75%)高出 4.61%,产量增加了 28.56%。这个成功的案例是迈向生物膜固定化发酵工业化生产的第一步。

关键点

• 设计的钢结构可用于 10L 生物反应器中的 L-赖氨酸固定化发酵。

• 固定化发酵的转化率从 13.99%提高到 60.07%,比游离细胞发酵高 1.03%。

• 重新设计的 50L 生物反应器的转化率高于游离细胞发酵。

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