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Hydrodynamic and oxygen mass transfer studies in a three-phase (air-water-ionic liquid) stirred tank bioreactor

机译:三相(空气-水-离子液体)搅拌釜生物反应器中的流体动力和氧气传质研究

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Recently, room temperature ionic liquids have been investigated as organic solvent replacements in multiphase partitioning bioreactors. They could prove particularly useful for oxidative bioconversions due to their non-volatile and non-flammable nature. In order to promote high mass transfer rates stirred tank bioreactors are normally used. However, for multiphase systems, particularly those featuring ionic liquids, there is little hydrodynamic information available to underpin bioreactor design and operation. The aim of this work was to study the hydrodynamic and oxygen mass transfer characteristics of a three-phase (gas-water-ionic liquid) stirred tank partitioning bioreactor. A central composite experimental design was used to investigate the interaction of three operational factors, agitation (400, 700,1000 rpm) and aeration rates (0.5,0.75,1.0 vvm), and ionic liquid volume fraction (5,12.5,20%), on two response variables, the Sauter mean droplet diameter (d_(32)) and the volumetric oxygen transfer coefficient (k_La). Three different ionic liquids with a range of physicochemical properties were also investigated. The experimental data obtained were fitted to empirical correlations relating d_(32) and k_La values to the measured gassed power input and other bioreactor operating parameters. In all cases the measured values of k_La (and in most cases d_(32) values) decreased as ionic liquid volume fraction increased as is the case when using conventional organic solvents. It was shown that different physicochemical properties of the ionic liquid tested gave important differences in the drop size behaviour as a function of agitation conditions. Both of the correlations established for describing the variation of k_La and d_(32) with bioreactor operating conditions gave reliable predictions of the measured values. These correlations will be useful for ongoing studies on the design and operation of partitioning bioreactors for oxidative bioconversions.
机译:近来,已经研究了室温离子液体作为多相分配生物反应器中有机溶剂的替代品。由于它们的非挥发性和非易燃性,它们可能被证明对氧化生物转化特别有用。为了促进高的传质速率,通常使用搅拌槽生物反应器。但是,对于多相系统,尤其是那些具有离子液体的系统,几乎没有可用于支撑生物反应器设计和操作的流体动力学信息。这项工作的目的是研究三相(气-水-离子液体)搅拌釜分配式生物反应器的水动力和氧气传质特性。中央复合实验设计用于研究三个操作因素的相互作用,即搅拌(400,700,1000 rpm)和曝气速率(0.5,0.75,1.0 vvm),以及离子液体体积分数(5,12.5,20%) ,在两个响应变量上,索特平均液滴直径(d_(32))和体积氧传递系数(k_La)。还研究了三种具有不同理化性质的离子液体。将获得的实验数据拟合为将d_(32)和k_La值与测得的充气功率输入和其他生物反应器操作参数相关的经验相关性。在所有情况下,与使用常规有机溶剂时一样,随着离子液体体积分数的增加,k_La的测量值(大多数情况下为d_(32)值)降低。结果表明,所测试的离子液体的不同物理化学性质使液滴大小行为随搅拌条件而变化。为描述k_La和d_(32)随着生物反应器操作条件的变化而建立的两个相关性均给出了测量值的可靠预测。这些相关性对于正在进行的用于氧化生物转化的分配生物反应器的设计和操作的研究将是有用的。

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