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Mathematical modeling of a continuous alcoholic fermentation process in a two-stage tower reactor cascade with flocculating yeast recycle

机译:两阶段塔式反应器级联中具有絮凝酵母循环的连续酒精发酵过程的数学模型

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Experiments of continuous alcoholic fermentation of sugarcane juice with flocculating yeast recycle were conducted in a system of two 0.22-L tower bioreac-tors in series, operated at a range of dilution rates (D_1 = D_2 = 0.27-0.95 h~(-1)), constant recycle ratio (α = F_R/F = 4.0) and a sugar concentration in the feed stream (S_0) around 150 g/L. The data obtained in these experimental conditions were used to adjust the parameters of a mathematical model previously developed for the single-stage process. This model considers each of the tower bioreactors as a perfectly mixed continuous reactor and the kinetics of cell growth and product formation takes into account the limitation by substrate and the inhibition by ethanol and biomass, as well as the substrate consumption for cellular maintenance. The model predictions agreed satisfactorily with the measurements taken in both stages of the cascade. The major differences with respect to the kinetic parameters previously estimated for a single-stage system were observed for the maximum specific growth rate, for the inhibition constants of cell growth and for the specific rate of substrate consumption for cell maintenance. Mathematical models were validated and used to simulate alternative operating conditions as well as to analyze the performance of the two-stage process against that of the single-stage process.
机译:在两个串联的0.22升塔式生物反应器的系统中,以稀释率范围(D_1 = D_2 = 0.27-0.95 h〜(-1)操作),进行了具有絮凝酵母循环的甘蔗汁连续酒精发酵的实验。 ),恒定的循环比(α= F_R / F = 4.0)和进料流(S_0)中的糖浓度约为150 g / L。在这些实验条件下获得的数据用于调整先前为单级过程开发的数学模型的参数。该模型将每个塔式生物反应器视为一个完美混合的连续反应器,并且细胞生长和产物形成的动力学考虑了底物的限制以及乙醇和生物质的抑制作用以及细胞维持所需的底物消耗。模型预测与级联两个阶段的测量结果均令人满意。对于最大比生长速率,细胞生长的抑制常数和细胞维持所需的底物消耗的特定速率,观察到相对于先前为单级系统估算的动力学参数的主要差异。验证了数学模型,并将其用于模拟替代操作条件以及分析两阶段过程与单阶段过程的性能。

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