Corrosion of Titanium Electrode Used for Solar Saline Electroflotation

Author:

Madrid Felipe M. Galleguillos1ORCID,Arancibia-Bravo María2ORCID,Cisterna Jonathan2ORCID,Soliz Álvaro3ORCID,Salazar-Avalos Sebastián1ORCID,Guevara Bastián14,Sepúlveda Felipe4,Cáceres Luis5ORCID

Affiliation:

1. Centro de Desarrollo Energético Antofagasta, Universidad de Antofagasta, Antofagasta 1240000, Chile

2. Departamento de Química, Universidad Católica del Norte, Antofagasta 1249004, Chile

3. Departamento de Ingeniería en Metalurgia, Universidad de Atacama, Copiapó 1531772, Chile

4. Departamento de Ingeniería en Minas, Universidad de Antofagasta, Antofagasta 1240000, Chile

5. Departamento de Ingeniería Química y Procesos de Minerales, Universidad de Antofagasta, Antofagasta 1240000, Chile

Abstract

The solar electroflotation (EF) processes using saline electrolytes are today one of the great challenges for the development of electrochemical devices, due to the corrosion problems that are generated during the operation by being in permanent contact with Cl− ions. This manuscript discloses the corrosion behavior of titanium electrodes using a superposition model based on mixed potential theory and the evaluation of the superficial performance of the Ti electrodes operated to 4 V/SHE solar electroflotation in contact with a solution of 0.5 M NaCl. Additionally provided is an electrochemical analysis of Ti electrodes regarding HER, ORR, OER, and CER that occur during the solar saline EF process. The non-linear superposition model by mixed potential theory gives electrochemical and corrosion parameters that complement the information published in scientific journals, the corrosion current density and corrosion potential in these conditions is 0.069 A/m2 and −7.27 mV, respectively. The formation of TiO2 and TiOCl on the anode electrode was visualized, resulting in a reduction of its weight loss of the anode electrode.

Funder

Felipe M. Galleguillos Madrid during a visit to the Institute of Chemical Research of Catalonia

MINEDUC-UA project

ANID

Scaling Up Ingeniería

Publisher

MDPI AG

Subject

General Materials Science

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