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实验室规模搅拌式生物反应器中的功率输入测量

Power Input Measurements in Stirred Bioreactors at Laboratory Scale.

作者信息

Kaiser Stephan C, Werner Sören, Jossen Valentin, Blaschczok Katharina, Eibl Dieter

机构信息

Finesse, Thermo Fisher Scientific;

Institute of Chemistry and Biotechnology, Zurich University of Applied Sciences, School of Life Sciences and Facility Management.

出版信息

J Vis Exp. 2018 May 16(135):56078. doi: 10.3791/56078.

Abstract

The power input in stirred bioreactors is an important scaling-up parameter and can be measured through the torque that acts on the impeller shaft during rotation. However, the experimental determination of the power input in small-scale vessels is still challenging due to relatively high friction losses inside typically used bushings, bearings and/or shaft seals and the accuracy of commercially available torque meters. Thus, only limited data for small-scale bioreactors, in particular single-use systems, is available in the literature, making comparisons among different single-use systems and their conventional counterparts difficult. This manuscript provides a protocol on how to measure power inputs in benchtop scale bioreactors over a wide range of turbulence conditions, which can be described by the dimensionless Reynolds number (Re). The aforementioned friction losses are effectively reduced by the use of an air bearing. The procedure on how to set up, conduct and evaluate a torque-based power input measurement, with special focus on cell culture typical agitation conditions with low to moderate turbulence (100 < Re < 2·10), is described in detail. The power input of several multi-use and single-use bioreactors is provided by the dimensionless power number (also called Newton number, P0), which is determined to be in the range of P0 ≈ 0.3 and P0 ≈ 4.5 for the maximum Reynolds numbers in the different bioreactors.

摘要

搅拌式生物反应器中的功率输入是一个重要的放大参数,可以通过旋转过程中作用在搅拌轴上的扭矩来测量。然而,由于在典型使用的衬套、轴承和/或轴封内部存在相对较高的摩擦损失以及市售扭矩计的精度问题,在小规模容器中通过实验确定功率输入仍然具有挑战性。因此,文献中关于小规模生物反应器,特别是一次性使用系统的相关数据有限,这使得不同一次性使用系统与其传统对应系统之间的比较变得困难。本手稿提供了一种方案,用于在广泛的湍流条件下测量台式规模生物反应器中的功率输入,湍流条件可用无量纲雷诺数(Re)来描述。通过使用空气轴承可有效降低上述摩擦损失。本文详细描述了如何设置、进行和评估基于扭矩的功率输入测量,特别关注细胞培养中典型的低至中等湍流(100 < Re < 2·10)搅拌条件。通过无量纲功率数(也称为牛顿数,P0)给出了几种多用途和一次性使用生物反应器的功率输入,对于不同生物反应器中的最大雷诺数,P0 的取值范围在 P0 ≈ 0.3 至 P0 ≈ 4.5 之间。

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