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固定化酿酒酵母细胞从角豆荚提取物生产乙醇的动力学

Kinetics of ethanol production from carob pods extract by immobilized Saccharomyces cerevisiae cells.

作者信息

Roukas T

机构信息

Department of Food Science and Technology, Aristotelian University of Thessaloniki, Greece.

出版信息

Appl Biochem Biotechnol. 1994 Jan;44(1):49-64. doi: 10.1007/BF02921851.

Abstract

Kinetics of ethanol production from carob pods extract by immobilized S. cerevisiae cells in static and shake flask fermentation have been investigated. Shake flask fermentation proved to be a better fermentation system for the production of ethanol than static fermentation. The optimum values of ethanol concentration, ethanol productivity, ethanol yield, and fermentation efficiency were obtained at pH range 3.5-6.5 and temperature between 30-35 degrees C. A maximum ethanol concentration (65 g/L), ethanol productivity (8.3 g/Lh), ethanol yield (0.44 g/g), and fermentation efficiency (95%) was achieved at an initial sugar concentration of 200, 150, 100, and 200 g/L, respectively. The highest values of specific ethanol production rate and specific sugar uptake rate were obtained at pH 6.5, temperature 40 degrees C, and initial sugar concentration of 100 g/L. Other kinetic parameters, biomass concentration, biomass yield, and specific biomass production rate were maximum at pH 5.5, temperature 30 degrees C, and initial sugar concentration 150 g/L. Under the same fermentation conditions non-sterilized carob pod extract gave higher ethanol concentration than sterilized medium. In repeated batch fermentations, the immobilized S. cerevisiae cells in Ca-alginate beads retained their ability to produce ethanol for 5 d.

摘要

研究了固定化酿酒酵母细胞在静态和摇瓶发酵中从角豆荚提取物生产乙醇的动力学。摇瓶发酵被证明是比静态发酵更好的乙醇生产发酵系统。在pH值3.5 - 6.5和温度30 - 35摄氏度范围内获得了乙醇浓度、乙醇生产率、乙醇产率和发酵效率的最佳值。当初始糖浓度分别为200、150、100和200 g/L时,乙醇浓度(65 g/L)、乙醇生产率(8.3 g/Lh)、乙醇产率(0.44 g/g)和发酵效率(95%)达到最大值。在pH 6.5、温度40摄氏度和初始糖浓度100 g/L时获得了最高的比乙醇生产速率和比糖摄取速率。其他动力学参数,生物量浓度、生物量产率和比生物量生产速率在pH 5.5、温度30摄氏度和初始糖浓度150 g/L时最大。在相同发酵条件下,未灭菌的角豆荚提取物比灭菌培养基产生更高的乙醇浓度。在重复分批发酵中,海藻酸钙珠中的固定化酿酒酵母细胞保持其产生乙醇的能力达5天。

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