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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 49, 2014 - Issue 5
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Original Articles

Identification of intermediates and ecotoxicity assessment during the UV/H2O2 oxidation of azo dye Reactive Orange 16

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Pages 491-502 | Received 06 Jul 2013, Published online: 10 Jan 2014

References

  • Zollinger , H. 2003 . Color Chemistry: Syntheses, Properties and Applications of Organic Dyes and Pigments , 579 Weinheim , , Germany : Wiley Publishing .
  • Arslan-Alaton , I. 2004 . “ Advanced oxidation of textile industry dyes ” . In Advanced Oxidation Processes for Water and Wastewater Treatment , Edited by: Parsons , S. 304 London : IWA Publishing .
  • Tunay , O. , Kabdasli , I. , Eremektar , G. and Orhon , D. 1996 . Color removal from textile wastewater . Water Sci. Technol. , 34 ( 11 ) : 9 – 16 .
  • Ozturk , A. and Abdullah , M. I.M. 2006 . Toxicological effect of indole and its azo dye derivatives on some microorganism under aerobic conditions . Sci. Total Environ. , 358 ( 1–3 ) : 137 – 142 .
  • Ghodbane , H. and Hamdaoui , O. 2010 . Decolorization of antraquinonic dye, C.I. Acid Blue 25, in aqueous solution by direct UV irradiation, UV/H2O2 and UV/Fe(II) processes . Chem. Eng. J. , 160 ( 1 ) : 226 – 231 .
  • Haji , S. , Benstaali , B. and Al-Bastaki , N. 2011 . Degradation of methyl orange by UV/H2O2 advanced oxidation process . Chem. Eng. J. , 168 ( 1 ) : 134 – 139 .
  • Gul , S. and Ozcan-Yildirim , O. 2009 . Degradation of Reactive Red 194 and Reactive Yellow 145 azo dyes by O3 and H2O2/UV-C processes . Chem. Eng. J. , 155 ( 3 ) : 684 – 690 .
  • Shu , H. Y. and Chang , M. C. 2005 . Decolorization effects of six azo dyes by O3, UV/O3 and UV/H2O2 processes . Dyes Pigm. , 65 ( 1 ) : 25 – 31 .
  • Elmorsi , T. M. , Riyad , Y. M. , Mohamed , Z. H. and Abd El Bary , H. M.H. 2010 . Decolorization of Mordant red 73 azo dye in water using H2O2/UV and photo-Fenton treatment . J. Hazard. Mater. , 174 ( 1–3 ) : 352 – 358 .
  • Modenes , A. N. , Espinoza-Quinones , F. R. , Manenti , D. R. , Borba , F. H. , Palacio , S. M. and Colombo , A. 2012 . Performance evaluation of a photo-Fenton process applied to pollutant removal from textile effluents in a batch system . J. Environ. Manage , 104 : 1 – 8 .
  • Buxton , G. V. , Greenstock , C. L. , Helman , W. P. and Ross , A. B. 1988 . Critical review of rate constants of hydrated electrons, hydrogen atoms and hydroxyl radicals (AOH/AO−) in aqueous solution . J. Phys. Chem. Ref. Data , 17 ( 2 ) : 513 – 887 .
  • Lergini , O. , Oliveros , E. and Braun , A. M. 1993 . Photochemical process for water treatment . Chem. Rev. , 93 ( 2 ) : 671 – 698 .
  • Chen , T. , Zheng , Y. , Lin , J. M. and Chen , G. 2008 . Study on the photocatalytic degradation of Methyl Orange in water using Ag/ZnO as catalyst by liquid chromatography electrospray ionization ion-trap mass spectrometry . J. Am. Soc. Mass Spectrom , 19 ( 7 ) : 997 – 1003 .
  • De Urzedo , A. P.F.M. , Diniz , M. E.R. , Nascentes , C. C. , Catharino , R. R. , Eberlin , M. N. and Augusti , R. 2007 . Photolytic degradation of the insecticide thiamethoxam in aqueous medium monitored by direct infusion electrospray ionization mass spectrometry . J. Mass Spectrom , 42 ( 10 ) : 1319 – 1325 .
  • Vasconcelos , T. G. , Henriques , D. M. , Konig , A. , Martins , A. F. and Kümmerer , K. 2009 . Photo-degradation of the antimicrobial ciprofloxacin at high pH: Identification and biodegradability assessment of the primary by-products . Chemosphere , 76 ( 4 ) : 487 – 493 .
  • Kusvuran , E. and Yildirim , D. 2013 . Degradation of bisphenol A by ozonation and determination of degradation intermediates by gas chromatography-mass spectrometry and liquid chromatography-mass spectrometry . Chem. Eng. J. , 220 : 6 – 14 .
  • Cai , M. , Jin , M. and Weavers , L. K. 2011 . Analysis of sonolytic degradation products of azo dye Orange G using liquid chromatography-diode array detection-mass spectrometry . Ultrason. Sonochem , 18 ( 5 ) : 1068 – 1076 .
  • Bilgi , S. and Demir , C. 2005 . Identification of photooxidation degradation products of C.I. Reactive Orange 16 dye by gas chromatography-mass spectrometry . Dyes Pigm , 66 ( 1 ) : 69 – 76 .
  • Chen , C. Y. 2009 . Photocatalytic Degradation of azo dye Reactive Orange 16 by TiO2. Water . Air Soil Poll. , 202 ( 1–4 ) : 335 – 342 .
  • Mitrović , J. , Radović , M. , Bojić , D. , Anđelković , T. , Purenović , M. and Bojić , A. 2012 . Decolorization of textile azo dye Reactive Orange 16 with UV/H2O2 process . J. Serb. Chem. Soc. , 77 ( 4 ) : 465 – 481 .
  • International Organization for Standardization (ISO) . 1998 . Water Quality – Determination of the inhibitory effect of water samples on the light emission of Vibrio fischer (Luminescent bacteria test) ISO 11348–3. Author: Geneva, Switzerland
  • Holcapek , M. , Volna , K. and Vanerkova , D. 2007 . Effects of functional groups on the fragmentation of dyes in electrospray and atmospheric pressure chemical ionization mass spectra . Dyes Pigm. , 75 ( 1 ) : 156 – 165 .
  • Holcapek , M. , Jirasko , R. and Lisa , M. 2010 . Basic rules for the interpretation of atmospheric pressure ionization mass spectra of small molecules . J. Chromatogr. A , 1217 ( 25 ) : 3908 – 3921 .
  • Baiocchi , C. , Brussino , M. C. , Pramauro , E. , Prevot , A. B. , Palmisano , L. and Marci , G. 2002 . Characterization of methyl orange and its photocatalytic degradation products by HPLC/UV-VIS diode array and atmospheric pressure ionization quadrupole ion trap mass spectrometry . Int. J. Mass Spectrom , 214 ( 2 ) : 247 – 256 .
  • Bansal , P. , Singh , D. and Sud , D. 2010 . Photocatalytic degradation of azo dye in aqueous TiO2 suspension: Reaction pathway and identification of intermediates products by LC/MS . Sep. Purific. Technol , 72 ( 3 ) : 357 – 365 .
  • Dalmazio , I. , Alves , T. M.A. and Augusti , R. 2008 . An appraisal on the degradation of paracetamol by TiO2/UV system in aqueous medium. Product identification by gas chromatography-mass spectrometry (GC-MS) . J. Braz. Chem. Soc , 19 ( 1 ) : 81 – 88 .
  • Ozen , A. S. , Aviyente , V. , De Proft , F. and Geerlings , P. 2004 . Modeling the substituent effect on the oxidative degradation of azo dyes . J. Phys. Chem. A , 108 ( 28 ) : 5990 – 6000 .
  • Palmisano , G. , Addamo , M. , Augugliaro , V. , Caronna , T. , DiPaola , A. , Lopez , E. G. , Loddo , V. , Marc , G. , Palmisano , L. and Schiavello , M. 2007 . Selectivity of hydroxyl radical in the partial oxidation of aromatic compounds in heterogeneous photocatalysis. Catal . Today , 122 ( 1–2 ) : 118 – 127 .
  • Stylidi , M. , Kondarides , D. I. and Verykios , X. E. 2003 . Pathways of solar light-induced photocatalytic degradation of azo dyes in aqueous TiO2 suspensions . Appl. Catal. B Environ , 40 ( 4 ) : 271 – 286 .
  • Zhao , H. Z. , Sun , Y. , Xu , L. N. , Ni , J. R. and Removal of Acid Orange 7 in simulated wastewater using a three-dimensional electrode reactor . 2010 . Removal mechanisms and dye degradation pathway . Chemosphere , 78 ( 1 ) : 46 – 51 .
  • Rizzo , L. 2011 . Bioassays as a tool for evaluating advanced oxidation processes in water and wastewater treatment . Water Res. , 45 ( 15 ) : 4311 – 4340 .
  • Karci , A. , Arslan-Alaton , I. , Olmez-Hanci , T. and Bekbolet , M. 2012 . Transformation of 2,4-dichlorophenol by H2O2/UV-C, Fenton and photo-Fenton processes: Oxidation products and toxicity evolution . J. Photoch. Photobio. A: Chem. , 230 ( 1 ) : 65 – 73 .
  • Olmez-Hanci , T. , Arslan-Alaton , I. and Genc , B. 2013 . Bisphenol A treatment by the hot persulfate process: Oxidation products and acute toxicity . J. Hazard. Mater. , 263 ( 2 ) : 283 – 290 .
  • Bernabeu , A. , Palacios , S. , Vicente , R. , Vercher , R. F. , Malato , S. , Arques , A. and Amat , A. M. 2012 . Solar photo-Fenton at mild conditions to treat a mixture of six emerging pollutants . Chem. Eng. J. , 198–199 : 65 – 72 .
  • Santiago , J. , Agüera , A. , Gómez-Ramos , M. M. , Alba , A. R.F. , García-Calvo , E. and Rosal , R. 2011 . Oxidation by-products and ecotoxicity assessment during the photodegradation of fenofibric acid in aqueous solution with UV and UV/H2O2 . J. Hazard. Mat. , 194 : 30 – 41 .

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