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Responses of Taxus cuspidata to hydrodynamics in bubble column bioreactors with different sparging nozzle sizes

机译:不同鼓泡喷嘴尺寸的鼓泡塔生物反应器中红豆杉对水动力的响应

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摘要

Studying bioreactor hydrodynamics under growth conditions holds great significance in the scale-up of plant cell cultures. In this study, a 3D Laser Doppler Anemometer (LDA) system was used to measure liquid velocity fields in bubble columns with different nozzle sizes, and their hydrodynamic stresses were calculated by liquid velocity fluctuation components. The magnitude of axial normal Reynolds stress was higher compared to other directions, varying from 2.0 Pa to 7.2 Pa. The maximum axial normal stress took place near the gas-liquid interface, followed by the sparger where bubbles form and the bulk flow area where bubbles rise, suggesting from a hydrodynamic perspective that cell damage occurs mainly at the gas-liquid interface. Reynolds stresses at the gas-liquid interface increased with decreasing nozzle size of distributor. Taxus cuspidata cultured in bubble columns with larger nozzle sizes showed better performance with respect to cell growth and viability, which matched well with hydrodynamics fluctuation in bubble columns with different nozzle sizes. The correlation of cellular response with hydrodynamics may be helpful in optimizing bioreactor design and scale-up of plant cell culture.
机译:在生长条件下研究生物反应器的流体动力学对扩大植物细胞培养的规模具有重要意义。在这项研究中,使用3D激光多普勒风速仪(LDA)系统来测量具有不同喷嘴尺寸的气泡塔中的液体速度场,并通过液体速度波动分量来计算其流体动力应力。轴向法线雷诺应力的大小高于其他方向,范围从2.0 Pa到7.2 Pa。最大轴向法向应力发生在气-液界面附近,其次是气泡的喷洒器和气泡的散流区从流体力学的角度来看,细胞损伤主要发生在气液界面。气-液界面处的雷诺应力随着分配器喷嘴尺寸的减小而增加。在较大喷嘴尺寸的气泡柱中培养的东北红豆杉在细胞生长和活力方面表现出更好的性能,这与不同喷嘴尺寸的气泡柱中的流体动力学波动很好地匹配。细胞反应与流体动力学的相关性可能有助于优化生物反应器的设计和植物细胞培养的规模化。

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