Logotipo del repositorio
  • English
  • Español
  • Iniciar sesión
    ¿Nuevo Usuario? Pulse aquí para registrarse¿Has olvidado tu contraseña?
Logotipo del repositorio
  • ¿Qué es SIC?
  • Estadísticas
  • Guía de Usuario
  • English
  • Español
  • Iniciar sesión
    ¿Nuevo Usuario? Pulse aquí para registrarse¿Has olvidado tu contraseña?
  • Inicio
  • Personal de Investigación
  • Unidad Académica
  • Publicaciones
  • Colecciones
    • Datos de investigación
    • Divulgación Científica
    • Personal de investigación
    • Protecciones
    • Proyectos externos
    • Proyectos internos
    • Publicaciones
    • Tesis
  1. Inicio
  2. Universidad de Santiago de Chile
  3. Publicaciones
  4. Elimination of sulfamethoxazole by anodic oxidation using mixed metal oxide anodes
 
  • Details
Options

Elimination of sulfamethoxazole by anodic oxidation using mixed metal oxide anodes

ISSN
2214-7144
Date Issued
2023
Author(s)
Huilinir-Curio, C 
Departamento de Ingeniería Química y Bioprocesos 
Lauzurique-Guerra, Y 
Departamento de Ingeniería Química y Bioprocesos 
Bollo, Soledad
Cabrera-Reina, Alejandro
Godoy, Mariel
Lauzurique, Yeney
Miralles-Cuevas, Sara
Oller, Isabel
Salazar-Gonzalez, Ricardo
Sepulveda, Pamela
DOI
https://doi.org/10.1016/j.jwpe.2023.103922
Abstract
The degradation of sulfamethoxazole (SMX) was studied by anodic oxidation (AO) process using mixed metal oxide (MMO) electrodes with different Ru/Ir ratios. Each electrode was characterized morphological and electrochemically. The electrolyzes were performed in NaCl and Na2SO4 applying two current densities (10 and 50 mA cm−2). The electrode with the highest composition of Ir, Ru/Ir (30/70), showed greater SMX degradation and generation of oxidizing species and was used to treat the antibiotic by AO and AO assisted by solar energy in natural water and actual municipal wastewater effluents. The efficiency in SMX degradation depends on the type of electrode used (MMO) and electrolytic medium. All MMO electrodes, reached almost total degradation of SMX in chloride medium. However, 60 % degradation of SMX in sulfate medium was achieved with anode with lower Ru/Ir ratio. Additionally, degradation of SMX in complex matrices can be successfully carried out by solar-assisted AO and AO processes, without the need to adjust the pH, at room temperature and using anode with lower Ru/Ir ratio. Finally, the AO process assisted by solar energy reduced electrolysis times and the cell's potential, leading to lower energy consumption. © 2023
Subjects

Anodic oxidation

Electrodes

Ru/Ir ratios

Solar energy

Sulfamethoxazole

...
Universidad de Santiago de Chile Avenida Libertador Bernardo O'Higgins nº 3363. Estación Central. Santiago Chile. admin.dspace@usach.cl © 2023 The DSpace CRIS Project - Modificado por VRIIC USACH.
...