Worldwide, most solid waste ends its life in landfill sites, which have a significant environmental impact in several respects. In particular, rainfall over landfill sites results in the production of an aqueous leachate containing compounds having low biodegradability, high toxicity, and a high organic load. For this reason, this study aims to investigate the applicability of electro-Fenton (EF) and photoelectro-Fenton (PEF) processes as alternative for treating a local landfill effluent with high organic content (chemical oxygen demand (COD) = 2684.7 mg-O L ) in a continuous-flow reactor (using, for first time, this kind of system with higher electrodes area of 35 cm) using boron-doped diamond anode (Nb/BDD) and a carbon felt cathode (FC) electrodes. The effects of current density j (30, 60 and 90 mA cm) and UV radiation wavelength (UVA and UVC) were studied to evaluate the treatment efficiency as well as the energy consumption. Results clearly showed that, the best efficiencies removing organic matter, in terms of COD, were about 66%, 68% and 89% with an energy consumption of only 19.41, 17.61 and 17.59 kWh kg COD for EF, PEF-UVA and PEF-UVC respectively, at 90 mA cm after 4 h of operation. The treatment of this kind of effluent produced organic and inorganic by-products, the acetic and formic acids as well as NO, NO, and NH, being assessed their concentrations.
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http://dx.doi.org/10.1016/j.envres.2022.113552 | DOI Listing |
Chemosphere
October 2024
Departamento de Química, División de Ciencias Naturales y Exactas, Universidad de Guanajuato, Cerro de la Venada s/n, Pueblito de Rocha, 36040, Guanajuato, Mexico. Electronic address:
Wastewaters with toxic and recalcitrant organic contaminants are poorly remediated in conventional wastewater treatment plants. So, powerful processes need to be developed to destroy such organic pollutants to preserve the quality of the aquatic environment. This critical and comprehensive review presents the recent innovative development of photoelectro-Fenton (PEF) covering the period 2019-September 2024.
View Article and Find Full Text PDFChemosphere
September 2024
Departamento de Química, División de Ciencias Naturales y Exactas, Universidad de Guanajuato, Cerro de la Venada s/n, Pueblito de Rocha, 36040 Guanajuato, Mexico. Electronic address:
Electrochemical oxidation (EO), electro-Fenton (EF), and photoelectro-Fenton (PEF) with a BDD anode have been comparatively assessed to remediate solutions of Red CL and/or Red WB azo dyes from real raw water. For the EO process in 50 mM NaSO at pH 3.0, the main oxidant was the heterogeneous OH generated at the anode, whereas in EF and PEF, the cathodic production of HO and the addition of 0.
View Article and Find Full Text PDFWater Environ Res
January 2024
School of Environmental Science and Technology, Dalian University of Technology, Dalian, China.
In this study, a novel photocatalytic fuel cell electro-Fenton (PFC-EF) system was constructed using g-C N @N-TNA and Ag/CNT@CF as electrodes. The composition, structure, and morphology of the electrodes were obtained. The g-C N @N-TNA, with its 2.
View Article and Find Full Text PDFSci Total Environ
February 2024
Laboratori d'Electroquímica dels Materials i del Medi Ambient, Departament de Ciència de Materials i Química Física, Secció de Química Física, Facultat de Química, Universitat de Barcelona, Martí i Franquès 1-11, 08028 Barcelona, Spain. Electronic address:
The decolorization and TOC removal of solutions of Acid Brown 14 (AB14) diazo dye containing 50 mg L of total organic carbon (TOC) have been first studied in a continuous-flow electrocoagulation (EC) reactor of 3 L capacity with Fe electrodes of ∼110 cm area each. Total loss of color with poor TOC removal was found in chloride, sulfate, and/or hydrogen carbonate matrices after 18 min of this treatment. The best performance was found using 5 anodes and 4 cathodes of Fe at 13.
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December 2023
Escuela de Ingeniería Química, Universidad del Valle, Ciudad Universitaria Meléndez-A.A., Cali, 23360, Colombia. Electronic address:
This work describes the scientific and academic contributions of Professor Enric Brillas through the analysis of Social Network Analysis and data science. The study examines the research collaborations and co-authorship networks of Professor Brillas, indicating his active engagement and up-to-date collaborations with key co-authors, including Ignasi Sirés and Pere.L.
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