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首页> 外文期刊>The Korean journal of chemical engineering >Pressure fluctuations and bubble size in viscous three-phase circulation fluidized bed bioreactors
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Pressure fluctuations and bubble size in viscous three-phase circulation fluidized bed bioreactors

机译:粘性三相循环流化床生物反应器中的压力波动和气泡大小

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摘要

Characteristics of pressure fluctuations and bubble size were investigated in the riser of a three-phase circulation fluidized bed bioreactor with viscous liquid medium, whose diameter is 0.102 m (ID) and 3.5 m in height. Effects of gas (0.01-0.07 m/s) and liquid (0.17-0.23 m/s) velocities and liquid viscosity (0.96-38 mPa·s) on the bubble size in the riser were examined. The bubbling phenomena in the bioreactor with viscous liquid medium were interpreted effectively by measuring and analyzing the pressure fluctuations by adopting chaos theory. The bubble size increased with increasing gas velocity or liquid viscosity, but decreased with increasing liquid velocity. The bubbling phenomena became more complicated and bubble size distribution tended to broad, with increasing gas velocity or liquid viscosity. The bubble size was well correlated in terms of correlation dimension of pressure fluctuations as well as dimensionless groups within these experimental conditions.
机译:在具有粘性液体介质的三相循环流化床生物反应器的提升管中研究了压力波动和气泡尺寸的特征,该反应器的直径为0.102 m(ID),高度为3.5 m。研究了气体(0.01-0.07 m / s)和液体(0.17-0.23 m / s)的速度以及液体粘度(0.96-38 mPa·s)对立管中气泡尺寸的影响。通过采用混沌理论测量和分析压力波动,有效地解释了带有粘性液体介质的生物反应器中的鼓泡现象。气泡大小随气体速度或液体粘度的增加而增加,但随液体速度的增加而减小。随着气体速度或液体粘度的增加,起泡现象变得更加复杂并且气泡尺寸分布趋于宽广。在这些实验条件下,气泡大小在压力波动的相关维度以及无因次基团方面具有很好的相关性。

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