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Modeling of Clostridium tyrobutyricum for Butyric Acid Selectivity in Continuous Fermentation

机译:酪氨酸梭菌连续发酵中丁酸选择性的建模

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A mathematical model was developed to describe batch and continuous fermentation of glucose to organic acids with Clostridium tyrobutyricum. A modified Monod equation was used to describe cell growth, and a Luedeking-Piret equation was used to describe the production of butyric and acetic acids. Using the batch fermentation equations, models predicting butyric acid selectivity for continuous fermentation were also developed. The model showed that butyric acid production was a strong function of cell mass, while acetic acid production was a function of cell growth rate. Further, it was found that at high acetic acid concentrations, acetic acid was metabolized to butyric acid and that this conversion could be modeled. In batch fermentation, high butyric acid selectivity occurred at high initial cell or glucose concentrations. In continuous fermentation, decreased dilution rate improved selectivity; at a dilution rate of 0.028 h−1, the selectivity reached 95.8%. The model and experimental data showed that at total cell recycle, the butyric acid selectivity could reach 97.3%. This model could be used to optimize butyric acid production using C. tyrobutyricum in a continuous fermentation scheme. This is the first study that mathematically describes batch, steady state, and dynamic behavior of C. tyrobutyricum for butyric acid production.
机译:建立了数学模型来描述酪氨酸丁酸梭菌将葡萄糖分批连续发酵为有机酸的过程。修改后的Monod方程用于描述细胞生长,Luedeking-Piret方程用于描述丁酸和乙酸的产生。使用分批发酵方程,还建立了预测丁酸连续发酵选择性的模型。该模型表明,丁酸的产生是细胞团的强大功能,而乙酸的产生是细胞生长速率的函数。此外,发现在高乙酸浓度下,乙酸代谢为丁酸,并且可以模拟该转化。在分批发酵中,高丁酸选择性在高初始细胞或葡萄糖浓度下发生。在连续发酵中,降低稀释率可提高选择性。在0.028 h -1 的稀释速率下,选择性达到了95.8%。模型和实验数据表明,在整个细胞循环中,丁酸的选择性可以达到97.3%。该模型可用于在连续发酵方案中使用酪丁酸梭菌优化丁酸生产。这是第一个数学上描述酪酸丁酸梭菌用于丁酸生产的间歇,稳态和动态行为的研究。

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