Computer tomographic detection of the liquid-liquid mixing and separation within the Annular Centrifugal Contactor/Extractor

Eggert A, Koegl T, Arlt W, Jupke A (2019)


Publication Type: Journal article

Publication year: 2019

Journal

Book Volume: 142

Pages Range: 143-153

DOI: 10.1016/j.cherd.2018.11.034

Abstract

Experimental investigation and determination of the operation characteristics of an Annular Centrifugal Contactor/Extractor (ACC/E) with various parameter combinations of fluid load and rotational speed were performed by applying non-invasive Computer Tomography (CT) measurement technique. A laboratory ACC/E is designed and manufactured by 3D rapid prototyping using laser sintering method. Further, to achieve a suitable attenuation contrast in CT images between the aqueous phase (distilled water) and organic phase (n-butanol), 10 wt.-% of potassium iodide is used. Therewith the liquid hold-up in the annular gap and the bottom region as well as the flow pattern and the separation process within the rotating cylinder are quantified in detail. The influence of the rotational speed and the volume flow on the operation characteristics is investigated for the first time in 3D resolution. Especially the visual representation of a dispersion band and wedge is a step forward in research and design issues of ACC/E. Thus, the present study shows impressively how a non-invasive measurement technique helps to understand complex equipment for liquid-liquid separation processes. Finally, the results of this work can be used for validation of CFD simulations and for further design improvement. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.

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APA:

Eggert, A., Koegl, T., Arlt, W., & Jupke, A. (2019). Computer tomographic detection of the liquid-liquid mixing and separation within the Annular Centrifugal Contactor/Extractor. Chemical Engineering Research & Design, 142, 143-153. https://dx.doi.org/10.1016/j.cherd.2018.11.034

MLA:

Eggert, Armin, et al. "Computer tomographic detection of the liquid-liquid mixing and separation within the Annular Centrifugal Contactor/Extractor." Chemical Engineering Research & Design 142 (2019): 143-153.

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