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Original Articles

Mineralization of C.I. Acid Red 14 azo dye by UV/Fe‐ZSM5/H2O2 process

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Pages 165-173 | Received 08 Aug 2009, Accepted 08 Oct 2009, Published online: 12 Feb 2010

References

  • Zollinger , H. 1987 . “ Colour Chemistry: Synthesis Properties and Application of Organic Dyes and Pigments ” . New York : VCH .
  • Ibney Hal , F. , Yamamoto , K. and Fukushi , K. 2007 . Hybrid treatment systems for dye wastewater . Crit. Rev. Environ. Sci. Technol. , 37 : 315 – 377 .
  • Parsons , S. 2004 . “ Advanced Oxidation Processes for Water and Wastewater Treatment ” . In , 1st ed. , London : IWA .
  • Khataee , A.R. 2009 . Photocatalytic removal of C.I. Basic Red 46 on immobilized TiO2 nanoparticles: Artificial neural network modelling . Environ. Technol. , 30 : 1155 – 1168 .
  • Trapido , M. and Kallas , J. 2000 . Advanced oxidation processes for the degradation and detoxification of 4‐nitrophenol . Environ. Technol. , 21 : 799 – 808 .
  • Li , Y. , Lu , Y. and Zhu , X. 2006 . Photo‐Fenton discoloration of the azo dye X‐3B over pillared bentonites containing iron . J. Hazard. Mater. , 132 : 196 – 201 .
  • Feng , J. , Hu , X. and Yue , P.O. 2004 . Discoloration and mineralization of orange II using different heterogeneous catalysts containing Fe: A comparative study . Environ. Sci. Technol. , 38 : 5773 – 5778 .
  • Muthuvel , I. and Swaminathan , M. 2007 . Photoassisted Fenton mineralisation of Acid Violet 7 by heterogeneous Fe(III)–Al2O3 catalyst . Catal. Commun. , 8 : 981 – 986 .
  • Feng , J. , Hu , X. and Yue , P.O. 2004 . Novel bentonite clay‐based Fe nanocomposite as a heterogeneous catalyst for photo‐Fenton discoloration and mineralization of Orange II . Environ. Sci. Technol. , 38 : 269 – 275 .
  • Yip , A.C. , Lam , F.L. and Hu , X. 2005 . Chemical‐vapor‐deposited copper on acid‐activated bentonite clay as an applicable heterogeneous catalyst for the photo‐Fenton‐like oxidation of textile organic pollutants . Ind. Eng. Chem. Res. , 44 : 7983 – 7990 .
  • Kasiri , M.B. , Aleboyeh , H. and Aleboyeh , A. 2008 . Degradation of Acid Blue 74 using Fe‐ZSM5 zeolite as a heterogeneous photo‐Fenton catalyst . Appl. Catal. B , 84 : 9 – 15 .
  • Kusic , H. , Koprivanac , N. and Selanec , I. 2006 . Fe‐exchanged zeolite as the effective heterogeneous Fenton‐type catalyst for the organic pollutant minimization: UV irradiation assistance . Chemosphere , 65 : 65 – 73 .
  • Sanjuan , A. , Aguirre , G. , Alvaro , M. and Garcia , H. 1998 . 2,4,6‐Triphenylpyrylium ion encapsulated in Y zeolite as photocatalyst. A co‐operative contribution of the zeolite host to the photodegradation of 4‐chlorophenoxyacetic acid using solar light . Appl. Catal. B , 15 : 247 – 257 .
  • Aravindhan , R. , Fathima , N.N. , Raghava Rao , J. and Unni Nair , B. 2006 . Wet oxidation of acid brown dye by hydrogen peroxide using heterogeneous catalyst Mn‐salen‐Y zeolite: A potential catalyst . J. Hazard. Mater. , 138 : 152 – 159 .
  • Patarin , J. , Kessler , H. and Guth , J.L. 1990 . Iron distribution in iron MFI‐type zeolite samples synthesized in fluoride medium: Influence of the synthesis procedure . Zeolites , 10 : 674 – 679 .
  • Nicole , I. , De Latt , J. , Dore , M. , Duguet , J.P. and Bonnel , C. 1990 . Use of U.V. radiation in water treatment: Measurement of photonic flux by hydrogen peroxide actinometry . Water Res. , 24 : 157 – 168 .
  • APHA, AWWA, and WEF . 1998 . “ Standard Methods for the Examination of Water and Wastewater ” . In , 20th ed. , Washington, DC : American Public Health Association .
  • Daneshvar , N. , Salari , D. and Khataee , A.R. 2003 . Photocatalytic degradation of azo dye acid red 14 in water: Investigation of the effect of operational parameters . J. Photochem. Photobiol. A , 157 : 111 – 116 .
  • Feng , W. , Nansheng , D. and Helin , H. 2000 . Degradation mechanism of azo dye C.I. reactive red 2 by iron powder reduction and photooxidation in aqueous solutions . Chemosphere , 41 : 1233 – 1238 .
  • Gogate , P.R. and Pandit , A.B. 2004 . A review of imperative technologies for wastewater treatment, I: Oxidation technologies at ambient conditions . Adv. Environ. Res. , 8 : 501 – 551 .
  • Feng , J. , Hu , X. , Yue , P.L. , Zhu , H.Y. and Lu , G.Q. 2003 . Degradation of azo‐dye Orange II by a photoassisted Fenton reaction using a novel composite of iron oxide and silicate nanoparticles as a catalyst . Ind. Eng. Chem. Res. , 42 : 2058 – 2066 .
  • Aleboyeh , A. , Aleboyeh , H. and Moussa , Y. 2003 . Critical effect of hydrogen peroxide in photochemical oxidative decolorization of dyes: Acid Orange 8, Acid Blue 74 and Methyl Orange . Dyes Pigments , 57 : 67 – 75 .
  • Neamtu , M. , Catrinescu , C. and Kettrup , A. 2004 . Effect of dealumination of iron (III)‐exchanged Y zeolites on oxidation of Reactive Yellow 84 azo dye in the presence of hydrogen peroxide . Appl. Catal. B , 51 : 149 – 157 .
  • Chen , J. and Zhu , L. 2007 . Heterogeneous UV‐Fenton catalytic degradation of dyestuff in water with hydroxyl‐Fe pillared bentonite . Catal. Today , 126 : 463 – 470 .
  • Centi , G. , Perathoner , S. , Torre , T. and Verduna , M.G. 2000 . Catalytic wet oxidation with H2O2 of carboxylic acids on homogeneous and heterogeneous Fenton‐type catalysts . Catal. Today , 55 : 61 – 69 .
  • Bolton , J.R. , Valladares , J.E. , Zanin , J.P. , Cooper , W.J. , Nickelsen , M.G. , Kajdi , D.C. , Waite , T.D. and Kurucz , C.N. 1998 . Figures‐of‐merit for advanced oxidation technologies: A comparison of homogeneous UV/H2O2, heterogeneous UV/TiO2 and electron beam processes . J. Adv. Oxid. Technol. , 3 : 174 – 181 .

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