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首页> 外文期刊>Biochemical Engineering Journal >Maximum stable drop size measurements indicate turbulence attenuation by aeration in a 3 m~3 aerated stirred tank
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Maximum stable drop size measurements indicate turbulence attenuation by aeration in a 3 m~3 aerated stirred tank

机译:最大稳定的液滴尺寸测量表明在3 m〜3充气搅拌罐中通过曝气进行湍流衰减

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摘要

In this study, break-up controlled drop dispersion experiments in a 3 m~3 pilot scale reactor with 1.2 m inner diameter are presented that allow a correlation of the maximum local energy dissipation rate in stirred reactors with intense aeration. Experiments with two different setups of 6-bladed Rushton turbine impellers with diameters of d = 0.41 m (d/D_R = 0.34) and d = 0.51 m (d/D_R=0.43) in a 3 impeller configuration were conducted. The results from experiments without aeration are well in agreement with the existing literature on drop dispersion. The results from experiments with aeration indicate a strong attenuation of turbulence intensity in stirred tank reactors by the presence of air. The ratio between maximum and volume-averaged energy dissipation rate was reduced by aeration by 64% for the d/D_R = 0.34 impeller and by 52% for the d/D_R = 0.43 impeller when compared with unaerated operating conditions on the basis of equal volumetric power input. The value of the aeration rate had no measurable effect in the range of aeration rates applied, which was between 0.1 vvm (volume of gas/volume liquid/minute) and 1 vvm.
机译:在这项研究中,提出了在一个内径为1.2 m的3 m〜3中试规模反应器中进行的分散控制液滴分散实验,该实验允许在搅拌反应器中进行最大曝气时最大局部能量耗散率相关。进行了两种不同设置的6叶片Rushton涡轮叶轮的实验,这些叶轮的直径为d = 0.41 m(d / D_R = 0.34)和d = 0.51 m(d / D_R = 0.43),配置为3个叶轮。没有充气的实验结果与液滴分散的现有文献非常吻合。曝气实验的结果表明,存在空气后,搅拌釜反应器中的湍流强度大大减弱。与基于相同体积的无气运行条件相比,d / D_R = 0.34叶轮的曝气量降低了最大与体积平均能量耗散率之间的比率,d / D_R = 0.43叶轮的曝气量降低了52%电源输入。曝气速率的值在所施加的曝气速率的范围内(在0.1 vvm(气体/体积液体/分钟的体积)和1 vvm之间)没有可测量的影响。

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