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出 处:《Chinese Journal of Chemical Engineering》1999年第1期30-37,共8页中国化学工程学报(英文版)
基 金:Supported by the National Natural Science Foundation of China(No.39170020).
摘 要:Membrane microfiltration fermentation (MMF) with cell recycling was successfully applied to the production of glucose oxidase (GOD). A plate microfiltration module was found suitable for such purpose. By feeding whole medium in MMF, the productivity of GOD was much higher than that by feeding glucose alone. With increasing dilution rate the enzyme productivity increased and average enzyme activity decreased. The enzyme productivity of MMF under D = 0.12h-1 and 0.20h-1 were 3871 and 3945U·h-1 respectively, which was about 3 times as that of batch fermentation (BF) and the average enzyme activity was still as high as STU·mL-1 under D = 0.12h-1. The relative efficiency of MMF applied to low yield strain was higher than that applied to high yield strain.Membrane microfiltration fermentation (MMF) with cell recycling was successfully ap-piled to the production of glucose oxldase (GOD). A plate mlcrofiltmtion module was found suitable for such purpose. By feeding whole medium in MMF, the productivity of GOD was much higher than that by feeding glucose alone. With increasing dilution rate the enzynte productivity increased and average enzyme activity decreased, The enzyme productivity of MMF under D = 0.12h^-1 and 8.28h^-1 were 3871 and 3945 U-h^-1 respectively, which was about 3 times as that of hatch fermen-tation (BF) and the average enzyme activity was still as high as 37U·mL^-1 under D = 0.12h^-1. The relative efficiency of MMF applied to low yield strain was higher than that applied to high yield strain.
关 键 词:glucose oxidase membrane microfiltration fermentation cell recycling acetylcellulose membrane
分 类 号:TQ925.4[轻工技术与工程—发酵工程]
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