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首页> 外文期刊>Biotechnology Progress >Characterization of Oxygen Transfer in Miniature and Lab-Scale Bubble Column Bioreactors and Comparison of Microbial Growth Performance Based on Constant k_La
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Characterization of Oxygen Transfer in Miniature and Lab-Scale Bubble Column Bioreactors and Comparison of Microbial Growth Performance Based on Constant k_La

机译:基于常数k_La的微型和实验室规模的鼓泡塔生物反应器中氧气转移的表征以及微生物生长性能的比较

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This work describes the engineering characterization of miniature (2 mL) and laboratory-scale (100 mL) bubble column bioreactors useful for the cultivation of microbial cells.These bioreactors were constructed of glass and used a range of sintered glass gas diffusers with differently sized pores to disperse humidified air within the liquid biomedium.The effect of the pressure of this supplied air on the breakthrough point for gas diffusers with different pore sizes was examined and could be predicted using the Laplace-Young equation.The influence of the superficial gas velocity (ug) on the volumetric mass transfer coefficient (kyx) was determined,and values of up to 0.09 s"1 were observed in this work.Two modeling approaches were considered in order to predict and provide comparison criteria.The first related the volumetric power consumption (P/V) to the kyz and a good correlation was obtained for differently sized reactors with a given pore size,but this correlation was not satisfactory for bubble columns with different gas diffusers.Values for P/V ranged from about 10 to 400 W-m"3.Second,a model was developed predicting bubble size (c4),bubble rising velocity (u,),gas hold-up (),liquid side mass transfer coefficient (&L),and thus the kl using established theory and empirical correlations.Good agreement was found with our experimental data at different scales and pore sizes.Values for c4 varied from 0.1 to 0.6 mm,and &L values between 1.7 and 9.8 x 10~4 m.s"1 were determined. Several E.coli cultivations were performed in the miniature bubble column at low and high kyi values,and the results were compared to those from a conventional stirred tank operated under identical kua values.Results from the two systems were similar in terms of biomass growth rate and carbon source utilization.
机译:这项工作描述了可用于微生物细胞培养的微型(2 mL)和实验室规模(100 mL)气泡塔生物反应器的工程表征。这些生物反应器由玻璃制成,并使用了一系列具有不同孔径的烧结玻璃气体扩散器在空气中分散湿空气。这种供给的压力对具有不同孔径的气体扩散器的穿透点的影响进行了研究,并可以使用Laplace-Young方程进行预测。 ug)确定了体积传质系数(kyx),在这项工作中观察到的值高达0.09 s“ 1。为了预测和提供比较标准,考虑了两种建模方法。第一种与体积功耗有关(P / V)与kyz的关系,对于具有给定孔径的不同尺寸的反应器,获得了良好的相关性,但这种相关性不令人满意对于具有不同气体扩散器的气泡塔来说,P / V的值大约在10至400 Wm“ 3之间。其次,建立了一个预测气泡大小(c4),气泡上升速度(u ,),气体滞留率的模型(),液体侧传质系数(&L),因此使用既定的理论和经验相关性得出k fl。在不同规模和孔径下,我们的实验数据都发现了很好的一致性.c4的值在0.1到0.6之间变化确定了mm和&L值在1.7和9.8 x 10〜4 ms“ -1之间。在微型鼓泡塔中以低kyi和高kyi值进行了几次大肠杆菌培养,并将结果与​​在相同kua值下运行的常规搅拌罐的结果进行了比较。两种系统的生物量增长率相似和碳源利用。

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