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首页> 外文期刊>Journal of Bioscience and Bioengineering >Effects of pH and Dissolved Oxygen on Cellulose Production by Acetobacter xylinum BRC5 in Agitated culture
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Effects of pH and Dissolved Oxygen on Cellulose Production by Acetobacter xylinum BRC5 in Agitated culture

机译:pH和溶解氧对搅动培养中木醋杆菌BRC5产生纤维素的影响

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Acetobacter xylinum BRC5 was cultivated in a jar fermentor using glucose as the sole carbon source. Strain BRC5 oxidized almost all of the glucose to gluconic acid; thereafter, it biosynthesized cellulose by utilizing glucoinc acid accumulated in the broth. The optimal pH for metabolizing glucose to gluconic acid was 4.0, while a pH of 5.5 was preferred for cell growth and cellulose production from the accumulated gluconic acid in the medium Shifting the pH from 4.0 to 5.5 during the cellulose production phase in batch cultures improved cellulose production and reduced the total fermentation time, compared to batch cultures at constant pH. In constant fed-batch culture, 10g/l of cellulose was obtained from 40 g/l of glucose, a yield which was approximately 2-fold higher than in batch culture with the same initial glucose concentration, even without control of the level of dissolved oxygen. The highest cellulose yield was obtained in fed-batch cultures in which the dissolved oxygen concentration was controlled at 10% saturation. Control of pH and dissolved oxygen to optimal levels was effective for improving the production rate and yield of cellulose, to achieve a high cellulose productivity of 0.3 g cellulose/l.h. Approximately 15 g/l of cellulose was considered to be the highest yield obtainable using conventional fermentors because the culture both then became too viscous to allow satisfactory aeration.
机译:用葡萄糖作为唯一碳源在木罐发酵罐中培养木醋杆菌BRC5。 BRC5菌株将几乎所有的葡萄糖氧化为葡萄糖酸。此后,它利用肉汤中积累的葡萄糖酸生物合成纤维素。葡萄糖代谢为葡萄糖酸的最佳pH为4.0,而细胞生长和培养基中积累的葡萄糖酸生产纤维素的pH值优选为5.5,在分批培养的纤维素生产阶段将pH从4.0改变为5.5与在恒定pH值下的分批培养相比,可减少生产量并减少总发酵时间。在恒定分批补料培养中,从40 g / l葡萄糖中获得10g / l纤维素,即使不控制溶解水平,产量也比具有相同初始葡萄糖浓度的分批培养高约2倍。氧。在分批补料培养中获得最高的纤维素收率,其中溶解氧浓度控制在10%饱和度。将pH和溶解氧控制在最佳水平对于提高纤维素的生产率和产率是有效的,以实现0.3g纤维素/l.h的高纤维素生产率。使用传统的发酵罐,大约15 g / l的纤维素被认为是可获得的最高产量,因为随后两种培养物都变得太粘而无法令人满意的通气。

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