Degradation of C.I. Reactive Red 2 (RR2) using ozone-based systems: comparisons of decolorization efficiency and power consumption.
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[1] Chung-Hsin Wu,et al. Decolorization of Procion Red MX-5B in electrocoagulation (EC), UV/TiO2 and ozone-related systems , 2008 .
[2] N. Modirshahla,et al. Decolorization and mineralization of C.I. Acid Yellow 23 by Fenton and photo-Fenton processes , 2007 .
[3] A. Gutowska,et al. Degradation mechanism of Reactive Orange 113 dye by H2O2/Fe2+ and ozone in aqueous solution , 2007 .
[4] M. A. Rauf,et al. Comparative decoloration study of Neutral Red by different oxidative processes , 2007 .
[5] J. Kałużna-Czaplińska,et al. Oxidative decomposition of Acid Brown 159 dye in aqueous solution by H2O2/Fe2+ and ozone with GC/MS analysis , 2007 .
[6] H. Znad,et al. UV light assisted decolorization of dark brown colored coffee effluent by photo-Fenton reaction. , 2006, Water research.
[7] Natalija Koprivanac,et al. Photo-assisted Fenton type processes for the degradation of phenol: a kinetic study. , 2006, Journal of hazardous materials.
[8] H. Kušić,et al. Azo dye degradation using Fenton type processes assisted by UV irradiation: a kinetic study , 2006 .
[9] Marcel Skoumal,et al. Mineralization of paracetamol by ozonation catalyzed with Fe2+, Cu2+ and UVA light , 2006 .
[10] M. Swaminathan,et al. Advanced oxidative decolourisation of Reactive Yellow 14 azo dye by UV/TiO2, UV/H2O2, UV/H2O2/Fe2+ processes—a comparative study , 2006 .
[11] Chung-Hsin Wu,et al. Decolorization of Reactive Red 2 by advanced oxidation processes: Comparative studies of homogeneous and heterogeneous systems. , 2006, Journal of hazardous materials.
[12] M. Lucas,et al. Decolorization of the azo dye Reactive Black 5 by Fenton and photo-Fenton oxidation , 2006 .
[13] Chung-Hsin Wu,et al. Decolorization of Amaranth by advanced oxidation processes , 2005 .
[14] F. Beltrán,et al. Iron type catalysts for the ozonation of oxalic acid in water. , 2005, Water research.
[15] A. Khataee,et al. The evaluation of electrical energy per order (E(Eo)) for photooxidative decolorization of four textile dye solutions by the kinetic model. , 2005, Chemosphere.
[16] J. Dominguez,et al. Vis and UV photocatalytic detoxification methods (using TiO2, TiO2/H2O2, TiO2/O3, TiO2/S2O82 -, O3, H2O2, S2O82-, Fe3+/H2O2 and Fe3+/H2O2/C2O42-) for dyes treatment , 2005 .
[17] B. Keskinler,et al. Ozonation of aqueous Bomaplex Red CR-L dye in a semi-batch reactor , 2005 .
[18] J. Garrido,et al. Degradation of the herbicide 2,4-DP by catalyzed ozonation using the O3/Fe2+/UVA system , 2004 .
[19] V Kavitha,et al. The role of ferrous ion in Fenton and photo-Fenton processes for the degradation of phenol. , 2004, Chemosphere.
[20] N. Ince,et al. Individual and combined effects of ultrasound, ozone and UV irradiation: a case study with textile dyes. , 2004, Ultrasonics.
[21] Jaime Giménez,et al. Degradation of chlorophenols by means of advanced oxidation processes: a general review , 2004 .
[22] Enric Brillas,et al. Degradation of the herbicide 2,4-dichlorophenoxyacetic acid by ozonation catalyzed with Fe2+ and UVA light , 2003 .
[23] A. L. Marechal,et al. Comparison of H2O2/UV, H2O2/O3 and H2O2/Fe2+ processes for the decolorisation of vinylsulphone reactive dyes , 2003 .
[24] S. Esplugas,et al. Mineralization of phenol in aqueous solution by ozonation using iron or copper salts and light , 2003 .
[25] Isil Akmehmet Balcioglu,et al. Advanced oxidation of a reactive dyebath effluent: comparison of O3, H2O2/UV-C and TiO2/UV-A processes. , 2002, Water research.
[26] S. Esplugas,et al. Comparison of different advanced oxidation processes for phenol degradation. , 2002, Water research.
[27] S. Esplugas,et al. UV- and UV/Fe(III)-enhanced ozonation of nitrobenzene in aqueous solution , 2001 .
[28] I. Arslan. Treatability of a simulated disperse dye-bath by ferrous iron coagulation, ozonation, and ferrous iron-catalyzed ozonation. , 2001, Journal of hazardous materials.
[29] J. Peres,et al. Comparison of the degradation of p-hydroxybenzoic acid in aqueous solution by several oxidation processes. , 2001, Chemosphere.
[30] W. Tumas,et al. Figures-of-merit for the technical development and application of advanced oxidation technologies for both electric- and solar-driven systems (IUPAC Technical Report) , 2001 .
[31] R. Haseneder,et al. Photochemical oxidation of p-chlorophenol by UV/H2O2 and photo-Fenton process. A comparative study. , 2001, Waste management.
[32] Walter Z. Tang,et al. Stochiometry of Fenton's Reagent in the Oxidation of Chlorinated Aliphatic Organic Pollutants , 1997 .
[33] R. Bauer,et al. UV-O3, UV-H2O2, UV-TiO2 and the photo-Fenton reaction - comparison of advanced oxidation processes for wastewater treatment , 1994 .