The effectiveness of membrane systems for the separation of anolyte and catholyte in a lab-scale copper electrowinning cell based on reactive electrodialysis

Cifuentes L.; Mondaca, C; Casas, JM

Abstract

A study has been carried out to establish the effectiveness of various membrane systems for the separation of anolyte (aqueous FeSO4 + H2SO4) and catholyte (aqueous CuSO4 + H 2SO4) in a lab-scale copper electrowinning cell based on reactive electrodialysis. With a single anion membrane, there was a small but significant unwanted transport of both copper and iron through the membrane. Separation effectiveness increased by increasing the number of membranes, but so did the cell voltage, which implies a higher energy cost. For the most effective system (2 type B membranes), the unwanted transport rates were 4 × 10-4 mol h-1 m-2 for Cu and 17 × 10-4 mol h-1 m-2 for Fe. The corresponding cell voltage was 0.774 V. The difference in the transport rates for Fe and Cu may be explained by the ion transport mechanisms in the studied systems. © 2004 Elsevier Ltd. All rights reserved.

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Título según WOS: The effectiveness of membrane systems for the separation of anolyte and catholyte in a lab-scale copper electrowinning cell based on reactive electrodialysis
Título según SCOPUS: The effectiveness of membrane systems for the separation of anolyte and catholyte in a lab-scale copper electrowinning cell based on reactive electrodialysis
Título de la Revista: MINERALS ENGINEERING
Volumen: 17
Número: 6
Editorial: PERGAMON-ELSEVIER SCIENCE LTD
Fecha de publicación: 2004
Página de inicio: 803
Página final: 809
Idioma: English
DOI:

10.1016/j.mineng.2004.01.010

Notas: ISI, SCOPUS