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J Hazard Mater ; 205-206: 1-9, 2012 Feb 29.
Article in English | MEDLINE | ID: mdl-22230753

ABSTRACT

The present work describes a more efficient methodology for the chlorination of water containing disperse dyes, where the chlorinated byproducts identified by mass spectra are compared. For this investigation, we tested the degradation of CI Disperse Blue 291 dye, 2-[(2-Bromo-4,6-dinitrophenyl)azo]-5-(diethylamino)-4-methoxyacetanilide) a commercial azo dye with mutagenic properties. The present work evaluates the photoelectrocatalytic efficiency of removing the CI Disperse Blue 291 dye from a wastewater of the textile industry. We employed NaCl as a supporting electrolyte. It should be noted that photoelectrocatalytic techniques are non-conventional method of generating chlorine radicals. The by-products formed in this process were analyzed using spectrophotometry, liquid chromatography, dissolved organic carbon, mass spectral analysis and mutagenicity assays. The process efficiency was compared with the conventional chlorination process adopted during sewage and effluents treatment processes. This conventional chlorination process is less efficient in removing color, total organic carbon than the photoelectrochemistry technique. Furthermore, we shall demonstrate that the mutagenicity of the generated by-products obtained using photoelectrocatalysis is completely different from that obtained by the conventional oxidation of chloride ions in the drinking water treatment process.


Subject(s)
Azo Compounds/chemistry , Chlorine/chemistry , Coloring Agents/chemistry , Mutagens/chemistry , Waste Disposal, Fluid/methods , Water Pollutants, Chemical/chemistry , Azo Compounds/radiation effects , Azo Compounds/toxicity , Catalysis , Coloring Agents/radiation effects , Coloring Agents/toxicity , Electrochemistry , Halogenation , Industrial Waste , Mutagens/radiation effects , Mutagens/toxicity , Organometallic Compounds/chemistry , Oxidants/chemistry , Photochemical Processes , Salmonella typhimurium/drug effects , Salmonella typhimurium/genetics , Textile Industry , Ultraviolet Rays , Water Pollutants, Chemical/radiation effects , Water Pollutants, Chemical/toxicity , Water Purification/methods
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