| Literature DB >> 26968997 |
Rosa Alhelí Herrada1, Alejandro Medel1, Federico Manríquez2, Ignasi Sirés3, Erika Bustos4.
Abstract
After intense years of great development, the electrochemical technologies have become very suitable alternatives in niche markets like industrial wastewater reclamation and soil remediation. A key role to achieve a high efficiency in such treatments is played by the characteristics of the coating of the electrodes employed. This paper compares three techniques, namely immersion, painting and electrophoresis, for the preparation of IrO2-Ta2O5ǀTi, so-called dimensionally stable anodes (DSA(®)). The quality of the coatings has been investigated by means of surface and electrochemical analysis. Their ability to generate hydroxyl radicals and degrade aqueous solutions of hydrocarbons like phenanthrene, naphthalene and fluoranthene has been thoroughly assessed. Among the synthesis techniques, electrophoretic deposition yielded the best results, with DSA(®) electrodes exhibiting a homogeneous surface coverage that led to a good distribution of active sites, thus producing hydroxyl radicals that were able to accelerate the degradation of hydrocarbons.Entities:
Keywords: Dimensionally stable anode; Electro-oxidation; Hydrocarbon; Hydroxyl radical; Water treatment
Year: 2016 PMID: 26968997 DOI: 10.1016/j.jhazmat.2016.02.076
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588