Treatment of a Textile Effluent by Electrochemical Oxidation and Coupled System Electooxidation–Salix babylonica

Author:

Sánchez-Sánchez Alejandra1,Tejocote-Pérez Moisés2,Fuentes-Rivas Rosa María3,Linares-Hernández Ivonne1,Martínez-Miranda Verónica1,Fonseca-Montes de Oca Reyna María Guadalupe1ORCID

Affiliation:

1. Centro Interamericano de Recursos del Agua, Universidad Autónoma del Estado de México, Carretera Toluca-Atlacomulco, Km 14.5 Unidad San Cayetano, 50200 Toluca, MEX, Mexico

2. Centro de Investigación en Ciencias Biológicas Aplicadas, Universidad Autónoma del Estado de México, Carretera Toluca-Atlacomulco, Km 14.5 Unidad San Cayetano, 50200 Toluca, MEX, Mexico

3. Facultad de Geografía, Universidad Autónoma del Estado de México, Cerro de Coatepec s/n, Ciudad Universitaria, 50110 Toluca, MEX, Mexico

Abstract

The removal of pollutants from textile wastewater via electrochemical oxidation and a coupled system electrooxidation—Salix babylonica, using boron-doped diamond electrodes was evaluated. Under optimal conditions of pH 5.23 and 3.5 mA·cm−2 of current density, the electrochemical method yields an effective reduction of chemical oxygen demand by 41.95%, biochemical oxygen demand by 83.33%, color by 60.83%, and turbidity by 26.53% at 300 minutes of treatment. The raw and treated wastewater was characterized by infrared spectroscopy to confirm the degradation of pollutants. The wastewater was oxidized at 15-minute intervals for one hour and was placed in contact with willow plants for 15 days. The coupled system yielded a reduction of the chemical oxygen demand by 14%, color by 85%, and turbidity by 93%. The best efficiency for the coupled system was achieved at 60 minutes, at which time the plants achieved more biomass and photosynthetic pigments.

Funder

Consejo Nacional de Ciencia y Tecnología

Publisher

Hindawi Limited

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,Atomic and Molecular Physics, and Optics,General Chemistry

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