首页> 外文会议>Symposium on Fermentation Biotechnology and 224th National Meeting of the American Chemical Society; Aug 18-22, 2002; Boston, Massachusetts >Controlling Filamentous Fungal Morphology by Immobilization on a Rotating Fibrous Matrix to Enhance Oxygen Transfer and L(+)-Lactic Acid Production by Rhizopus oryzae
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Controlling Filamentous Fungal Morphology by Immobilization on a Rotating Fibrous Matrix to Enhance Oxygen Transfer and L(+)-Lactic Acid Production by Rhizopus oryzae

机译:通过固定在旋转的纤维基质上以增强氧转移和米根霉的L(+)-乳酸生产来控制丝状真菌形态。

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摘要

Filamentous fungi are widely used in industrial fermentations. However, the filamentous morphology is usually difficult to control and often cause problems in conventional submerged fermentations. The fungal morphology has profound effects on mass transfer, cell growth, and metabolite production. Controlling the filamentous morphology by immobilization on a rotating fibrous matrix was studied for its effects on oxygen transfer and lactic acid production in aerobic fermentation by Rhizopus oryzae. Compared to the conventional stirred tank fermentor, the fermentation carried out in the rotating fibrous bed bioreactor (RFBB) resulted in a good control of the filamentous morphology, and improved oxygen transfer and lactic acid production from glucose. A high lactic acid concentration of 137 g/L with a high yield of 0.83 g/g and reactor productivity of 2.1 g/Lh was obtained with the RFBB in repeated batch fermentations. The process was stable and can be used for an extended operation period.
机译:丝状真菌广泛用于工业发酵。但是,丝状形态通常难以控制,并且经常在常规的浸入式发酵中引起问题。真菌形态对传质,细胞生长和代谢产物产生了深远的影响。研究了通过固定在旋转的纤维基质上控制丝状形态对稻根霉有氧发酵过程中氧转移和乳酸产生的影响。与传统的搅拌罐发酵罐相比,在旋转纤维床生物反应器(RFBB)中进行的发酵可以很好地控制丝状形态,并改善了葡萄糖的氧转移和乳酸生产。用RFBB在重复的分批发酵中获得了137 g / L的高乳酸浓度,0.83 g / g的高产率和2.1 g / Lh的反应器生产率。该过程稳定,可延长使用时间。

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