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首页> 外文期刊>Bioprocess Engineering: Bioreactors Upstream and Downstream Processes Measurement and Control >Continuous ethanol fermentation in a tower reactor with flocculating yeast recycle: scale-up effects on process performance, kinetic parameters and model predictions
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Continuous ethanol fermentation in a tower reactor with flocculating yeast recycle: scale-up effects on process performance, kinetic parameters and model predictions

机译:塔式反应器中连续乙醇发酵与絮凝酵母循环:放大工艺性能,动力学参数和模型预测的影响

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摘要

An unsegregated and unstructured model developed for a small-scale process of ethanol production in a tower reactor with cell recycle was applied to describe the experimental data obtained in a large-scale process. The model was developed considering the following points: reactor hydrodynamic behavior analogous to that of ideal CSTR, substrate limitation, inhibition phenomena linked both to ethanol and to biomass, absence of fermentation in the settler, and no loss of cell viability. The scale-up criterion consisted in maintaining an identical relation settler volume/fermentor volume on the two scales. All large-scale experiments were carried out using a flocculating yeast strain IR-2, isolated from fermented food, and identified as Saccharomyces cerevisiae. Sugarcane juice was used as the substrate source with sugar concentrations of 150 g/l. Different values of dilution rate and recycle ratio were employed (D = 0.11-0.33 h~(-1), #alpha# = 5.4-18.0) and the temperature was of 32 deg C. The kinetic parameters were similar on both scales and the model predictions agreed well with the large-scale experimental data.
机译:针对塔式反应器中具有单元循环的乙醇生产的小规模过程开发的非隔离和非结构化模型,用于描述在大规模过程中获得的实验数据。该模型的开发考虑了以下几点:与理想CSTR相似的反应器流体动力学行为,底物限制,与乙醇和生物质有关的抑制现象,在沉降器中没有发酵以及细胞活力没有损失。放大标准包括在两个刻度上保持相同的沉降器体积/发酵罐体积关系。所有大型实验均使用絮凝的酵母菌株IR-2进行,该菌株从发酵食品中分离出来,并被鉴定为酿酒酵母。甘蔗汁用作糖浓度为150 g / l的底物来源。使用不同的稀释率和循环比值(D = 0.11-0.33 h〜(-1),#alpha#= 5.4-18.0),温度为32℃。动力学参数在两个刻度上均相似模型预测与大规模实验数据非常吻合。

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