Beeton S, Bellhouse B J, Knowles C J, Millward H R, Nicholson A M, Wyatt J R
Department of Applied Biology, University of Central Lancashire, Preston, UK.
Appl Microbiol Biotechnol. 1994 Feb;40(6):812-7. doi: 10.1007/BF00173980.
A novel membrane bioreactor, previously assessed for its gas transfer characteristics, was used in various size and membrane configurations for the growth of the strictly aerobic bacterium Pseudomonas aeruginosa. The bioreactor was found to readily support growth, and the initial growth rates showed the previously demonstrated enhanced effect in gas O2 mass transfer of the dimpled membrane bioreactor over flat membrane bioreactors. The production of a secondary metabolite by a Pseudomonas sp. following growth was demonstrated, as was the biotransformation of a nitrile by Nocardia rhodochrous with the removal of the biotransformation products across a membrane. The potential of the bioreactor, in terms of other applications in the field of biotechnology, is discussed.
一种新型膜生物反应器,此前已对其气体传递特性进行过评估,该反应器采用了各种尺寸和膜配置,用于严格需氧细菌铜绿假单胞菌的生长。结果发现,该生物反应器能够轻松支持细菌生长,而且初始生长速率显示出,与平板膜生物反应器相比,之前所证明的凹坑膜生物反应器在气体氧气传质方面具有增强效果。实验证明了假单胞菌属细菌在生长后会产生次生代谢产物,以及诺卡氏菌对腈的生物转化,并通过膜去除生物转化产物。本文还讨论了该生物反应器在生物技术领域其他应用方面的潜力。