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Monitoring initial Glucose Concentration for Optimum pH Control during Fermentation of Microbial Cellulose in Rotary Discs Reactor

机译:监测初始血糖浓度在旋转盘反应器中微生物纤维素发酵过程中的最佳pH控制

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The study aimed to investigate the effect of initial glucose concentration on the microbial cellulose production using Acetobacter xylinum in a Rotary Discs Reactor (RDR- 2 liter volume). The fermentations were carried out for four days at temperature 28°C, initial pH 6.5, and 9 rpm of rotation speed; meanwhile, the initial glucose concentration was manipulated in the range of 0.5-5.0 % (w/v). The cell growth was stimulated using 1.4% (v/v) ethanol in the fermentation medium. The result indicated that 1% (w/v) of initial glucose concentration provided the highest microbial cellulose yield with total wet weight of 296.1657g/l. The increase of initial glucose concentration resulted to the decrease of microbial cellulose yield and greater pH drop after fermentation. It can be conclude that production of microbial cellulose using RDR could produce relatively much higher microbial cellulose with less amounts of glucose in a shorter fermentation period compared to static fermentation due to more efficient oxygen uptake during rotary movements and homogenous environment for microbial growth.
机译:该研究旨在探讨初始葡萄糖浓度对使用旋转盘反应器(RDR-2升体积)的乙酰杆菌的微生物纤维素产生的影响。在温度28℃,初始pH6.5和9rpm的转速下进行发酵4天;同时,初始葡萄糖浓度在0.5-5.0%(w / v)的范围内。在发酵培养基中使用1.4%(v / v)乙醇刺激细胞生长。结果表明,1%(w / v)的初始葡萄糖浓度提供了最高的微生物纤维素产率,总湿重为296.1657g / l。初始葡萄糖浓度的增加导致微生物纤维素产率降低和发酵后更大的pH降。可以得出结论,由于在旋转运动期间更有效的氧气摄取和用于微生物生长的均匀环境,与静态发酵相比,使用RDR的微生物纤维素的产生可以产生相对更高的发酵时较少的葡萄糖。

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