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生物反应器中丁醇的生物生产:从同时原位丁醇回收中获得的消除产物毒性的新见解。

Bioproduction of butanol in bioreactors: new insights from simultaneous in situ butanol recovery to eliminate product toxicity.

机构信息

Department of Animal Sciences, Ohio State Agricultural Research and Development Center, The Ohio State University, 1680 Madison Avenue, Wooster, Ohio 44691, USA.

出版信息

Biotechnol Bioeng. 2011 Aug;108(8):1757-65. doi: 10.1002/bit.23123. Epub 2011 Mar 15.

Abstract

Simultaneous acetone butanol ethanol (ABE) fermentation by Clostridium beijerinckii P260 and in situ product recovery was investigated using a vacuum process operated in two modes: continuous and intermittent. Integrated batch fermentations and ABE recovery were conducted at 37 °C using a 14-L bioreactor (7.0 L fermentation volume) containing initial substrate (glucose) concentration of 60 g/L. The bioreactor was connected in series with a condensation system and vacuum pump. Vacuum was applied continuously or intermittently with 1.5 h vacuum sessions separated by 4, 6, and 8 h intervals. A control ABE fermentation experiment was characterized by incomplete glucose utilization due to butanol toxicity to C. beijerinckii P260, while fermentation coupled with in situ recovery by both continuous and intermittent vacuum modes resulted in complete utilization of glucose, greater productivity, improved cell growth, and concentrated recovered ABE stream. These results demonstrate that vacuum technology can be applied to integrated ABE fermentation and recovery even though the boiling point of butanol is greater than that of water.

摘要

利用真空过程的两种模式(连续和间歇),对丙酮丁醇乙醇(ABE)的协同发酵和原位产物回收进行了研究。采用装有初始底物(葡萄糖)浓度为 60 g/L 的 14-L 生物反应器(7.0 L 发酵体积),在 37°C 下进行集成分批发酵和 ABE 回收。生物反应器与冷凝系统和真空泵串联。连续或间歇施加真空,真空时间为 1.5 小时,间隔为 4、6 和 8 小时。控制 ABE 发酵实验的特点是由于丁醇对 C 的毒性,葡萄糖不完全利用。beijerinckii P260,而发酵与连续和间歇真空模式相结合的原位回收导致葡萄糖完全利用、更高的生产力、改善的细胞生长和浓缩的回收 ABE 流。这些结果表明,即使丁醇的沸点大于水,真空技术也可以应用于集成的 ABE 发酵和回收。

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