Ciineyt Arslan, Paul F. Duby
The factors affecting the anodic processes in the electrowinning of chromium were investigated by carrying out electrolysis experiments with a chromium ammonium sulfate solution in a laboratory-scale cell of approximately 90 ml equipped with a diaphragm. The current density (838-1077 A/m²), temperature (50-70 °C), and rate of electrolyte flow (5-18 ml/h) from catholyte to anolyte were varied to determine their effects on the anodic oxidation of Cr(III) to Cr(VI). There was no attempt to optimize the cathodic deposition process. The behavior of the traditional lead-silver anode with an effective surface area of 10 cm² was compared with that of two commercially available dimensionally stable anodes. The current efficiency for the anodic oxidation of the chromic ion varied from about 75 to 100% with the lead-silver anode while it was only about 10 to 20% with the dimensionally stable anodes. The other variables had a much less significant effect.
@article{10f67d69-814f-44e8-8653-440de457c2ad,
title={The anodic oxidation of Cd III) to Cd VI) in a laboratory-scale chromium electrowinning cell},
author={Ciineyt Arslan and Paul F. Duby},
year={1997},
language={en}
}TY - JOUR TI - The anodic oxidation of Cd III) to Cd VI) in a laboratory-scale chromium electrowinning cell AU - Ciineyt Arslan AU - Paul F. Duby PY - 1997 LA - en ER -
Alex Chen
This document examines the application of lead dioxide (PbO₂) insoluble anodes, particularly PbO₂-coated titanium (PbO₂/Ti), in hydrometallurgical pro
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