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利用渗透汽化膜生物反应器中的酿酒酵母进行闭路循环连续乙醇发酵的动力学模型。

Kinetic model of continuous ethanol fermentation in closed-circulating process with pervaporation membrane bioreactor by Saccharomyces cerevisiae.

机构信息

School of Chemical Engineering, Sichuan University, 610065 Chengdu, China.

Biogas Institute of Ministry of Agriculture, Chengdu 610041, China.

出版信息

Bioresour Technol. 2015 Feb;177:169-75. doi: 10.1016/j.biortech.2014.11.076. Epub 2014 Nov 25.

Abstract

Unstructured kinetic models were proposed to describe the principal kinetics involved in ethanol fermentation in a continuous and closed-circulating fermentation (CCCF) process with a pervaporation membrane bioreactor. After ethanol was removed in situ from the broth by the membrane pervaporation, the secondary metabolites accumulated in the broth became the inhibitors to cell growth. The cell death rate related to the deterioration of the culture environment was described as a function of the cell concentration and fermentation time. In CCCF process, 609.8 g L(-1) and 750.1 g L(-1) of ethanol production were obtained in the first run and second run, respectively. The modified Gompertz model, correlating the ethanol production with the fermentation period, could be used to describe the ethanol production during CCCF process. The fitting results by the models showed good agreement with the experimental data. These models could be employed for the CCCF process technology development for ethanol fermentation.

摘要

提出了无结构动力学模型来描述在具有渗透蒸发膜生物反应器的连续闭路发酵(CCCF)过程中乙醇发酵所涉及的主要动力学。通过膜渗透蒸发从发酵液中就地去除乙醇后,发酵液中积累的次级代谢物成为细胞生长的抑制剂。与培养环境恶化相关的细胞死亡率被描述为细胞浓度和发酵时间的函数。在 CCCF 过程中,在第一轮和第二轮分别获得了 609.8 g/L 和 750.1 g/L 的乙醇产量。与发酵周期相关的改进的 Gompertz 模型可用于描述 CCCF 过程中的乙醇生产。模型的拟合结果与实验数据吻合良好。这些模型可用于开发乙醇发酵的 CCCF 过程技术。

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