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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effect of adding glycerol and Tween 80 on gas holdup and bubble size distribution in an aerated stirred tank
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Effect of adding glycerol and Tween 80 on gas holdup and bubble size distribution in an aerated stirred tank

机译:添加甘油和吐温80对充气搅拌罐中气体滞留率和气泡尺寸分布的影响

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This work presents the results of an experimental parametric study of air-water dispersions in a laboratory scale stirred tank. The quantities monitored are total gas holdup and bubble size distribution. The physical parameters varied, in order to study their effect on the dispersion properties, are liquid viscosity as well as surface tension (static and dynamic) and surface viscoelasticity. Viscosity is varied by adding glycerol whereas surface properties are varied by adding Tween 80. In addition, the effect of the gas flowrate and the stirring rate are studied. Measurements of gas holdup are taken primarily by a non-invasive electrical technique which utilizes ring electrodes flush mounted to the wall. These measurements are verified against simultaneous differential pressure measurements and video images of the instantaneous height of the liquid free surface. Bubble size distributions are estimated analyzing still photographs. In the examined range of parameters, as the concentration of glycerol increases the gas holdup first increases and then decreases going through a peak at 41.6% v/v glycerol (viscosity: 5 mPa s). On the contrary, as the concentration of Tween 80 increases, the gas holdup increases monotonically up to a plateau value at and above 50 mg/l of Tween 80 (static surface tension: 38.3 mN/m). Further analysis of the results indicate no influence of coalescence/breakage phenomena in the observed bubble size distributions.
机译:这项工作介绍了实验室规模的搅拌罐中空气-水分散体的实验参数研究结果。监视的数量是总气体滞留量和气泡大小分布。为了研究它们对分散性能的影响,改变了物理参数,包括液体粘度以及表面张力(静态和动态)和表面粘弹性。通过添加甘油来改变粘度,而通过添加吐温80来改变表面性质。此外,研究了气体流量和搅拌速度的影响。气体滞留率的测量主要是通过非侵入式电气技术进行的,该技术利用齐平安装在墙上的环形电极。对照同步差压测量和无液表面瞬时高度的视频图像验证了这些测量。气泡大小分布是通过分析静态照片估算得出的。在所检查的参数范围内,随着甘油浓度的增加,气体滞留率首先增加,然后下降,最终达到41.6%v / v甘油的峰值(粘度:5 mPa s)。相反,随着吐温80浓度的增加,在吐温80达到或超过50 mg / l时,气体滞留率单调增加,直至达到平稳值(静态表面张力:38.3 mN / m)。对结果的进一步分析表明,在观察到的气泡尺寸分布中,聚结/破裂现象没有影响。

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