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首页> 外文期刊>RSC Advances >Enhancement of xylanase productivity using industrial by-products under solid suspended fermentation in a stirred tank bioreactor, with a dissolved oxygen constant control strategy
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Enhancement of xylanase productivity using industrial by-products under solid suspended fermentation in a stirred tank bioreactor, with a dissolved oxygen constant control strategy

机译:使用工业副产品在搅拌罐式生物反应器中进行固态悬浮发酵,提高木聚糖酶生产率,并采用溶解氧恒定控制策略

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摘要

Solid suspended fermentation of Bacillus subtilis D3d using different agro-industrial residues was performed in this work for the co-production of xylanase and lichenase. Based on the results, brewer's spent grain (BSG) and corn steep liquor (CSL) combination were selected for further studies. The central composite design with the aim of maximum enzyme production at minimum fermentation time indicated 2.5% BSG and 0.5% CSL at 42 h as the best conditions for highest productivity in the shake flask. The results revealed that CSL at a high level can lead to a reduction in enzyme productivity. In a 2 L stirred tank bioreactor, the productivity of xylanase reached a peak of 10 U mL(-1) h(-1) using a dissolved oxygen (DO)constant control strategy at 50% air saturation. Lichenase production increased 1.7 times, but the productivity of this enzyme was not affected by DO levels. The physiological state of solid suspended fermentation was investigated by carbon dioxide evolution rate (CER) and oxygen transfer rate (OTR) through off gas analyzer data.
机译:在这项工作中进行了枯草芽孢杆菌D3d使用不同的农业工业残留物的固态悬浮发酵,以共同生产木聚糖酶和地衣酶。根据结果​​,选择啤酒厂的废谷物(BSG)和玉米浆(CSL)组合进行进一步研究。旨在在最短发酵时间内产生最大酶的中央复合设计表明,在摇瓶中,在42小时内BSG为2.5%,CSL为0.5%是获得最高生产率的最佳条件。结果表明,高水平的CSL会导致酶生产率的降低。在2 L搅拌釜生物反应器中,使用50%空气饱和度的溶解氧(DO)恒定控制策略,木聚糖酶的生产率达到10 U mL(-1)h(-1)的峰值。地衣酶的产量增加了1.7倍,但该酶的生产率不受DO水平的影响。通过废气分析仪数据通过二氧化碳释放速率(CER)和氧气传输速率(OTR)研究了固态悬浮发酵的生理状态。

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