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Potential errors in conventional DOT measurement techniques in shake flasks and verification using a rotating flexitube optical sensor

机译:摇瓶中常规DOT测量技术中的潜在错误以及使用旋转flexitube光学传感器的验证

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摘要

BackgroundDissolved oxygen tension (DOT) is an important parameter for evaluating a bioprocess. Conventional means to measure DOT in shake flasks using fixed Clark-type electrodes immersed in the bulk liquid are problematic, because they inherently alter the hydrodynamics of the systems. Other approaches to measure DOT that apply fluorescing sensor spots fixed at the inside wall of a shake flask are also suboptimal. At low filling volumes for cultivating microorganisms with a high oxygen demand, the measured DOT signal may be erroneous. Here, the sensor spot is sometimes exposed to gas in the head space of the flask. Merely repositioning the sensor spot elsewhere in the flask does not address this problem, since there is no location in the shake flask that is always covered by the rotating bulk liquid. Thus, the aim of this prospective study is first, to verify the systemic error of Clark-type electrodes for measuring DOT in shake flasks. The second principle aim is to use the newly built "flexitube optical sensor" to verify potential errors in conventional optical DOT measurements based on fixed sensor spots.
机译:背景溶解氧张力(DOT)是评估生物过程的重要参数。使用固定在水中的克拉克型固定电极测量摇瓶中DOT的常规方法是有问题的,因为它们会固有地改变系统的流体动力学。使用固定在摇瓶内壁上的荧光传感器点的其他测量DOT的方法也不理想。在用于培养高氧气需求量的微生物的低填充量下,测得的DOT信号可能是错误的。在此,有时传感器点会暴露在烧瓶顶部空间的气体中。仅在摇瓶中其他位置重新放置传感器点并不能解决此问题,因为摇瓶中没有任何位置始终被旋转的散装液体覆盖。因此,这项前瞻性研究的目的首先是要验证用于测量摇瓶中DOT的Clark型电极的系统误差。第二个原理目标是使用新建立的“ flexitube光学传感器”,以基于固定的传感器点来验证常规光学DOT测量中的潜在误差。

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