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Customization of an optical probe device and validation of a signal processing procedure to study gas-liquid-solid flows. Application to a three-phase internal-loop Gas-lift Bioreactor

机译:定制光学探头设备并验证用于研究气液固流的信号处理程序。在三相内环气举生物反应器中的应用

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摘要

The study of local hydrodynamic properties of three-phase bioreactors in biotechnology processes is of great importance, mainly because of the complex interaction between bioreactor and microorganisms. However, classical techniques used for measuring local hydrodynamic properties such as single needle probes are mainly limited to two-phase flows. In this work it was developed and validated a new system, based on the customization of an optical probe initially designed in LEGI. The necessity of a new system was due to the agglomeration of the solid-phase (spent grains which are used as the micro-organisms carrier for the targeted application) around the optical tip, which influences the measurements. This new system allows for the measurement of the main local gas-phase properties in a complex gas-liquid-solid mixture. The new system was first validated for air-water system in an internal loop gas-lift reactor and then applied to a spent grains-air-water mixture at low solid load in an internal gas lift reactor. In addition, experiments using complementary techniques (as high speed camera and PIV) were performed that allowed for the validation of the new system and the explanation of possible physical mechanisms that are underlying on this multiphase system. The system developed has the potential for improvement and use in several biotechnology applications.
机译:研究三相生物反应器在生物技术过程中的局部水动力特性具有重要意义,这主要是由于生物反应器与微生物之间复杂的相互作用。但是,用于测量局部流体动力学特性的经典技术(例如单针探针)主要限于两相流。在这项工作中,它是根据LEGI最初设计的光学探头的定制开发并验证了一个新系统。新系统的必要性是由于固相(用于目标应用的用作目标微生物载体的废颗粒)的附聚,从而影响了测量。该新系统可以测量复杂的气-液-固混合物中的主要局部气相性质。新系统首先在内部回路气举反应器中用于空气-水系统,然后在内部气体举升反应器中以低固体负荷应用于废谷物-空气-水混合物。此外,还进行了使用互补技术(例如高速相机和PIV)的实验,这些实验可用于验证新系统并解释该多相系统中潜在的物理机制。开发的系统具有改进的潜力,并可在多种生物技术应用中使用。

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