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<p>LA PRESENTE INVENCION SE REFIERE UN SISTEMA CONFORMADO POR UNA CELDA ELECTROLITICA CON MULTI-COMPARTIMIENTOS, PARA REALIZAR EN LOS COMPARTIMIENTOS CATÔDICOS UN PROCESO DE ELECTROOBTENCIÓN DE METALES, Y DE MANERA INDEPENDIENTE, EN LOS COMPARTIMIENTOS ANÓDICOS REALIZAR UN PROCESO DE DISOLUCION. LOS COMPARTIMIENTOS CATÓDICOS POSEEN MARCOS ESTRUCTURALES QUE TIENEN EN SUS PAREDES DIAFRAGMAS A MEMBRANAS QUE PERMITEN EL PASO DE ELECTRONES, CON LA CUAL, LA CORRIENTE ES COMPARTIDA TANTO COMPARTIMIENTOS CATÓDICOS COMO EN LOS COMPARTIMIENTOS ANODICOS. LOS COMPARTIMIENTOS CATÓDICOS POSEEN MEDIOS PARA SOPORTAR LOS CÁTODOS TRADICIONALES, COMO POR EJEMPLO, CATODOS DE ACERO INOXIDABLE, Y ACTUAN DE MANERA INDEPENDIENTE, CON LA UNA ENTRADA PARA EL ELECTROLITO CATÓDICO RICO EN IONES METALICOS DE COBRE Y UNA SALIDA PARA EL ELECTROLITO CATODICO GASTADO.</p><p> THE PRESENT INVENTION REFERRES TO A SYSTEM CONFORMED BY AN ELECTROLYTIC CELL WITH MULTI-COMPARTMENTS, TO PERFORM A METHOD ELECTRONIC PROCESSING, AND INDEPENDENTLY, IN THE COMPONENTS OF ANOLETIC DOLLARIZATION. CATHODIC COMPARTMENTS HAVE STRUCTURAL FRAMEWORKS THAT HAVE IN MY WALLS DIAPHRAGMS TO MEMBRANES THAT ALLOW THE PASS OF ELECTRONS, WITH WHICH, THE CURRENT IS SHARED AS MUCH CATHODICAL COMPARTMENTS AS IN THE ANODIC COMPARTMENTS. CATHODIC COMPARTMENTS HAVE MEANS TO SUPPORT TRADITIONAL CATHODS, AS FOR EXAMPLE, STAINLESS STEEL CATHODES, AND ACT INDEPENDENTLY, WITH ONE ENTRY FOR CATHODIC ELECTROLYTE METALLIC ION FOR COPPER AND SALT CATHEDRAL. / p>
CL2015003610A2015-12-112015-12-11
System to form a multi-compartment electrolytic cell
CL2015003610A1
(en)
metal electroproduction cell, anodic device for metal electroproduction cells, electrolyser for extraction of primary metal from an electrolytic bath, and copper fabrication process
Unified electrolytic system to precipitate metals of interest and regenerate oxidizing agents, it comprises a membrane cell device that is composed of one or more cathode compartments and one or more anodic compartments, which are separated by an ionic and unidirectional exchange membrane; and electrolytic process.
Method for removing fluoride from a zinc-containing solution or suspension, defluoridated zinc sulfate solution and use thereof, and method for producing zinc and hydrogen fluoride or hydrofluoric acid.
Method of electrolytic deposition of arsenic from industrial electrolytes including waste electrolytes used in electrorefining of copper after prior decopperisation of electrolyte.
A method to perform a copper electroobtention process, which is performed in a cathodic compartment, which contains cathode electrolyte or catholyte rich in copper ions.
Electrolytic cell and process for obtaining metals by reactive electrodialysis comprising at least one basic unit with three compartments of equal dimensions, separated by ion exchange membranes, where two of the compartments will contain the anolyte and the other the catholyte.