Carla Lupi, Erwin Ciro
Indium, widely used as indium-tin oxide (ITO), has been recognized as a strategic metal for audiovisual, optoelectronic systems, semiconductors and photovoltaic fields. An increasing shortage and inflexible mineral supply have led indium to be recovered from secondary sources, such as waste electrical and electronic equipment (WEEE). The main step for indium hydrometallurgical recovery from WEEE is the electrowinning process using sulfate baths, giving lower environmental impact and improved workplace safety conditions. In this investigation, a titanium cathode has been employed for the study of the indium electrowinning process in a sulfate-based bath. This study was focused on analyzing current efficiency (CE), specific energy consumption (SEC) and deposit morphology and structure as the temperature, current density, pH and electrolyte composition were varied. Prior to conducting electrowinning tests, a conventional three-electrode cell was used to perform cyclic voltammetric assessments of the electrodeposition reactions on the Ti electrode at room temperature. The indium electrowinning tests on Ti cathodes presented CE values higher than 90%, with low energy consumption at low current densities, showing a negligible influence of additive agents in the bath. Moreover, the increase of the current density beyond 75 A/m2 produced significant effects by etching the electrode surface with 1M HF.
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title={Study of Operational Parameters on Indium Electrowinning Using a Ti Cathode},
author={Carla Lupi and Erwin Ciro},
year={2025},
language={en}
}TY - JOUR TI - Study of Operational Parameters on Indium Electrowinning Using a Ti Cathode AU - Carla Lupi AU - Erwin Ciro PY - 2025 LA - en ER -
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