首页> 外文期刊>International Journal of Occupational Hygiene >Investigation of Gas Hold up and Power Consumption in a Stirred Tank Bioreactor Using Single and Dual Impeller Configurations
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Investigation of Gas Hold up and Power Consumption in a Stirred Tank Bioreactor Using Single and Dual Impeller Configurations

机译:使用单叶轮和双叶轮配置研究搅拌槽生物反应器中的气体滞留量和功率消耗

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A laboratory stirred tank bioreactor with six single and dual-impeller configurations was tested to obtain the optimum operating conditions for future biological processes. Six impeller combinations consisting of three basic impeller types, namely Rushton turbine (RT), pitched 4blade (P4B) and pitched 2blade (P2B) downward flow were investigated in 1.77 L bioreactor working volume. Power consumption and gas hold-up measurements were taken over a range of 100-1000 rpm of stirring speed and 1-5 Lmin -1 of air flowrates, for all the six combinations consisting of any single and dual impellers. Using predicted data some empirical correlations were derived which present relations in estimation of power consumption in stirred tanks with various impeller configurations. Electrical measurement method was use to determine the power drown in the stirred bioreactor. Gas hold-up increased with an increase in stirring speed and superficial gas velocity for all the impellers employed. The number and type of impellers in stirred bioreactor had considerable influence on gas hold-up behavior of the stirred bioreactor. Besides, Rushton turbine-dual Impeller gave comparably maximum gas hold-up, but at significantly higher power consumption levels. The proposed correlations offered good agreement with theexperimental data.
机译:测试了具有六个单叶轮和双叶轮配置的实验室搅拌罐生物反应器,以获得未来生物过程的最佳操作条件。在1.77 L生物反应器的工作容积中,研究了由三种基本叶轮类型组成的六个叶轮组合,即Rushton涡轮(RT),斜向4叶片(P4B)和斜向2叶片(P2B)。在由任何单叶轮和双叶轮组成的所有六个组合中,在100-1000 rpm的搅拌速度和1-5 Lmin -1的空气流量范围内进行了功耗和气体滞留量测量。使用预测数据得出了一些经验相关性,这些经验相关性表示了各种叶轮配置的搅拌釜中功率消耗的估算关系。使用电测量方法来确定在搅拌的生物反应器中淹没的功率。对于所有使用的叶轮,气体滞留量随着搅拌速度和表观气体速度的增加而增加。搅拌生物反应器中叶轮的数量和类型对搅拌生物反应器的气体滞留行为有相当大的影响。此外,Rushton涡轮双叶轮可提供最大程度的气体滞留量,但功耗要高得多。所提出的相关性与实验数据具有很好的一致性。

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