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Performance Map for the Design of Liquid‐Liquid Extraction Columns
For the fast approximation of liquid‐liquid extraction column designs via HETS (height equivalent of a theoretical stage) values and flooding points, a population balance model was developed. The model requires only one pilot‐scale column experiment to fit a coalescence parameter. The comparison of experimental data with simulations shows good agreement for a stirred extraction column. With the model, the operation domain of the column is simulated and visualized in a performance map, showing the holdup, the distance to the flooding point and HETS values.
Performance Map for the Design of Liquid‐Liquid Extraction Columns
For the fast approximation of liquid‐liquid extraction column designs via HETS (height equivalent of a theoretical stage) values and flooding points, a population balance model was developed. The model requires only one pilot‐scale column experiment to fit a coalescence parameter. The comparison of experimental data with simulations shows good agreement for a stirred extraction column. With the model, the operation domain of the column is simulated and visualized in a performance map, showing the holdup, the distance to the flooding point and HETS values.
Performance Map for the Design of Liquid‐Liquid Extraction Columns
Weber, Benedikt (Autor:in) / Meyer, Christian (Autor:in) / Jupke, Andreas (Autor:in)
Chemie Ingenieur Technik ; 91 ; 1674-1680
01.11.2019
7 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch