Efficient cephalexin degradation using active chlorine produced on ruthenium and iridium oxide anodes: Role of bath composition, analysis of degradation pathways and degradation extent
Author:
Funder
COLCIENCIAS
Universidad de Antioquia
CDMX-MEXICO
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference45 articles.
1. Effects of carbonate on the electrolytic removal of ammonia and urea from urine with thermally prepared IrO2 electrodes;Amstutz;J. Appl. Electrochem.,2012
2. Standard Practice for the Preparation of Substitute Wastewater;ASTM D5905-98(2013),2013
3. Electroactivity of RuO2–IrO2 mixed nanocatalysts toward the oxygen evolution reaction in a water electrolyzer supplied by a solar profile;Audichon;Int. J. Hydrog. Energy,2014
4. Preparation and characterization of supported RuxIr(1−x)O2 nano-oxides using a modified polyol synthesis assisted by microwave activation for energy storage applications;Audichon;Appl. Catal. B Environ.,2017
5. Combined direct and indirect electroxidation of urea containing water;Carlesi Jara;J. Appl. Electrochem.,2008
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