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PMID: 29453718 Published · ppublish English Journal Article

CFD simulation of copper(II) extraction with TFA in non-dispersive hollow fiber membrane contactors.

Environmental science and pollution research international ·Vol. 25 ·No. 12 ·2018-04-00 ·页码 12053-12063

Muhammad A, Younas M, Rezakazemi M

Abstract

This study presents computational fluid dynamics (CFD) simulation of dispersion-free liquid-liquid extraction of copper(II) with trifluoroacetylacetone (TFA) in hollow fiber membrane contactor (HFMC). Mass and momentum balance Navier-Stokes equations were coupled to address the transport of copper(II) solute across membrane contactor. Model equations were simulated using COMSOL Multiphysics™. The simulation was run to study the detailed concentration distribution of copper(II) and to investigate the effects of various parameters like membrane characteristics, partition coefficient, and flow configuration on extraction efficiency. Once-through extraction was found to be increased from 10 to 100% when partition coefficient was raised from 1 to 10. Similarly, the extraction efficiency was almost doubled when porosity to tortuosity ratio of membrane was increased from 0.05 to 0.81. Furthermore, the study revealed that CFD can be used as an effective optimization tool for the development of economical membrane-based dispersion-free extraction processes.

Keywords
CFD Diffusion Hollow fiber Membrane contactor Simulations
MeSH 主题词
Copper/analysis Hydrodynamics Liquid-Liquid Extraction/methods Membranes, Artificial Models, Theoretical Pentanones/chemistry Porosity Solutions Surface Properties
化学物质
Membranes, Artificial Pentanones Solutions Copper 1,1,1-trifluoro-2,4-pentanedione
作者与单位
共 3 位作者,点击展开单位 / ORCID
Muhammad Amir
Department of Chemical Engineering, University of Engineering and Technology, P.O. Box 814, University Campus, Peshawar, 25120, Pakistan.
Younas Mohammad
Department of Chemical Engineering, University of Engineering and Technology, P.O. Box 814, University Campus, Peshawar, 25120, Pakistan.
Rezakazemi Mashallah ORCID
Faculty of Chemical and Materials Engineering, Shahrood University of Technology, Shahrood, Iran. [email protected].
Article Info
Journal
Environmental science and pollution research international
Abbr.
Environ Sci Pollut Res Int
ISSN
1614-7499
Corresponding email
Published
2018-04-00
电子出版
2018-00-27
页码
12053-12063
Language
English
Country/Region
Germany
NLM ID
9441769
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