298
Views
17
CrossRef citations to date
0
Altmetric
ADSORPTION

Sorption Studies of Bromate Removal from Water by Nano–Al2O3

&
Pages 89-95 | Received 14 Mar 2011, Accepted 18 Jul 2011, Published online: 28 Dec 2011

REFERENCES

  • American Water Works Association ( 1999 ) Drinking Water Quality Standards, Regulations, & Goals. Water Quality & Treatment Handbook, , 5th Ed. , Letterman , R.D. , eds.; McGraw-Hill : New York .
  • IARC ( 1999 ) Potassium Bromate (Summary of Data Reported and Evaluation) ; IARC : Lyon .
  • Kirisits , M. ; Snoeyink , V. ; Chee-Sanford , J. ; Daugherty , B. ; Brown , J. ; Raskin , L. ( 2002 ) Effect of operating conditions on bromate removal efficiency in BAC filters . J. Am. Water Works Assoc. , 94 : 182 – 193 .
  • USEPA ( 1998 ) National primary drinking water regulations: Disinfectants and disinfection byproducts . Final rule. Fed. Reg. , 63 ( 241 ): 69390 – 69476 .
  • Haag , W.R. ; Hoigné , J. ( 1983 ) Ozonation of bromide containing drinking water: Kinetics of formation hypo-bromous acid and bromate . Environ. Sci. Technol. , 17 : 261 – 267 .
  • Yates , R.S. ; Stenstrom , M.K. Bromate production in ozone contactors . ( 1993 ) In Annual AWWA Conference, San Antonio.
  • Gunten , U.V. ; Hoigné , J. ( 1994 ) Bromate formation during ozonation of bromide-containing waters: Interaction of ozone and hydroxyl radical reaction . Environ. Sci. Technol. , 28 : 1234 – 1242 .
  • Legube , B. ; Koudjonou , B.K. ; Croue , J.P. ; Merlet , N. ( 1995 ) Influence of the presence of natural organic matter on bromate formation by ozonation . Water Supply , 13 : 51 – 57 .
  • Xie , L. ; Shang , C. ( 2006 ) Effects of copper and palladium on the reduction of bromate by Fe(0) . Chemosphere , 64 : 919 – 930 .
  • Xie , L. ; Shang , C. ( 2007 ) The effects of operational parameters and common anions on the reactivity of zero-valent iron in bromate reduction . Chemosphere , 66 : 1652 – 1659 .
  • Siddiqui , M. ; Amy , G. ; Ozekin , K. ; Zhai , W. ; Westerhoff , P. ( 1994 ) Alternative strategies for removing bromate . J. Am. Water Works Assoc. , 86 : 81 – 96 .
  • Gordon , G. ; Gauw , R.D. ; Emmert , G.L. ; Walters , B.D. ; Bubnis , B. ( 2002 ) Chemical reduction methods for bromate ion removal . J. Am. Water Works Assoc. , 94 : 91 – 98 .
  • Siddiqui , M. ; Zhai , W. ; Amy , G. ; Mysore , C. ( 1996 ) Bromate ion removal by activated carbon . Water Res. , 30 : 1651 – 1660 .
  • Bao , M.L. ; Griffini , O. ; Santianni , D. ; Barbieri , K. ; Burrini , D. ; Pantani , F. ( 1999 ) Removal of bromate ion from water using granular activated carbon . Water Res. , 33 : 2959 – 2970 .
  • Huang , W.J. ; Cheng , Y.L. ( 2008 ) Effect of characteristics of activated carbon on removal of bromate . Sep. Purif. Technol. , 59 : 101 – 107 .
  • Singer , P.C. ; Bilyk , K. ( 2002 ) Enhanced coagulation using a magnetic ion-exchange resin . Water Res. , 36 : 4009 – 4022 .
  • Johnson , C.J. ; Singer , P.C. ( 2004 ) Impact of a magnetic ion-exchange resin on ozone demand and bromate formation during drinking water treatment . Water Res. , 38 : 3738 – 3750 .
  • Hatzistavros , V.S. ; Koulouridakis , P.E. ; Aretaki , I.I. ; Kallithrakas-Kontos , N.G. ( 2007 ) Bromate determination in water after membrane complexation and total reflection X-ray fluorescence analysis . Anal. Chem. , 79 : 2827 – 2832 .
  • Peldszus , S. ; Andrews , S.A. ; Souza , R. ; Smith , F. ; Douglas , I. ; Bolton , J. ; Huck , P.M. ( 2004 ) Effect of medium-pressure UV irradiation on bromate concentrations in drinking water, a pilot-scale study . Water Res. , 38 : 211 – 217 .
  • Siddiqui , M. ; Amy , G. ; Cooper , W. ( 1996a ) Bromate discharge ion removal by electric-arc and high-energy electron beam processes . ACS SymP. Ser Water Disinfect. Natural Organic Matter , 649 : 366 .
  • Siddiqui , M. ; Amy , G. ; Cooper , W.J. ; Kurucz , C.N. ; Waite , T.D. ; Nickelsen , M.G. (1996b) Bromate ion removal by HEEB irradiation. J. Am. Water Works Assoc. , 88: 90–101.
  • Hossain , I. ; Longoria , R. ; Joost , R. ( 1996 ) DBP formation and removal in ozonation reactions . World Water Environmen. Eng. , 19 : 24 – 25 .
  • Selcuk , H. ; Vitosoglu , Y. ; Ozaydin , S. ; Bekbolet , M. ( 2005 ) Optimization of ozone and coagulation processes for bromate control in Istanbul drinking waters . Desalination , 176 : 211 – 217 .
  • Westerhoff , P. ( 2003 ) Reduction of nitrate, bromate, and chlorate by zero valent iron (Fe0) . J. Environ. Eng. ASCE , 129 : 10 – 16 .
  • Wang , Q. ; Snyder , S. ; Kim , J. ; Choi , H. ( 2009 ) Aqueous ethanol modified nanoscale zerovalent iron in bromate reduction: Synthesis, characterization, and reactivity . Environ. Sci. Technol. , 43 : 3292 – 3299 .
  • Prados-Ramirez , M. ; Ciba , N. ; Bourbigot , M. ( 1995 ) Available techniques for reducing bromate in drinking water . Water Supply , 13 : 61 – 70 .
  • Kirisits , M.J. ; Brown , J.C. ; Snoeyink , V.L. ; Raskin , L.M. ; Chee-Sanford , J.C. ; Liang , S. ; Min , J. ( 2001 ) Water quality factors affecting bromate reduction in biologically active carbon filters . Water Res. , 35 : 891 – 900 .
  • Faust , S.D. ; Aly , O.M. ( 1987 ) Adsorption Process for Water Treatment ; Butterworths Publishers : Stoneham .
  • Altundoğan , H.S. ; Tumen , F. ( 2002 ) Removal of phosphates from aqueous solution by using bauxite. I: Effect of pH on the adsorption of various phosphates . J. Chem. Technol. Biotechnol. , 77 : 77 – 85 .
  • Jovančić , P. ; Radetić , M. ( 2008 ) Emerging contaminants from industrial and municipal waste: removal technologies . In: The Handbook of Environmental Chemistry/Water Pollution , Barceló , D. ; Petrovic , M. , eds.; Vol. 5 , Springer-Verlag: Berlin, Heidelberg , 239 – 264 .
  • Hristovski , K. ; Baumgardner , A. ; Westerhoff , P. ( 2007 ) Selecting metal oxide nanomaterials for arsenic Removal in fixed bed columns: From nanopowders to aggregated nanoparticle media . J. Hazard. Mater. , 147 : 265 – 274 .
  • Puttamraju , P. ; SenGupta , A.K. ( 2006 ) Evidence of tunable on-off sorption behaviors of metal oxide nanoparticles: Role of ion exchanger support . Ind. Eng. Chem. Res. , 45 : 7737 – 7742 .
  • Zhao , X. ; Wang , J. ; Wu , F. ; Wang , T. ; Cai , Y. ; Shi , Y. ; Jiang, G. (2010) Removal of fluoride from aqueous media by Fe3O4@Al(OH)3 magnetic nanoparticles . J. Hazard. Mater. , 173 : 102 – 109 .
  • Wang , S.-G. ; Ma , Y. ; Shi , Y.-J. ; Gong , W.-X. ( 2009 ) Defluoridation performance and mechanism of nano–scale aluminum oxide hydroxide in aqueous solution . J. Chem. Technol. Biotechnol. , 84 : 1043 – 1050 .
  • Patel , G. ; Pal , U. ; Menon , S. ( 2009 ) Removal of fluoride from aqueous solution by CaO nanoparticles . Sep. Sci. Technol. , 44 : 2806 – 2826 .
  • Hajizadeh , S. ; Kirsebom , H. ; Galaev , I.Y. ; Mattiasson , B. ( 2010 ) Evaluation of selective composite cryogel for bromate removal from drinking water . J. Sep. Sci. , 33 : 1752 – 1759 .
  • Liu , T. ; Cui , F. ; Zhao , Z. ; Liu , D. ; Zhu , Q. ; Wang , H. ( 2010 ) Study on adsorption of bromate from aqueous solution on modified activated carbon . AIP Conf. Proc. , 1251 : 105 – 108 .
  • Wang , L. ; Zhang , J. ; Liu , J. ; He , H. ; Yang , M. ; Yu , J. ; Ma , Z. ; Jiang , F. ( 2010 ) Removal of bromate ion using powdered activated carbon . J. Environ. Sci. , 22 : 1846 – 1853 .
  • Bhatnagar , A. ; Choi , Y. ; Yoon , Y. ; Shin , Y. ; Jeon , B.-H. , Kang , J.W. ( 2010 ) Bromate removal from water by granular ferric hydroxide (GFH) . J. Hazard. Mater. , 170 : 134 – 140 .
  • Cui , Y. ; Hu , Z. ; Chen , J. ; Yan , Z. ( 2011 ) Removal of bromate from aqueous solution by corncobs . Desalination Water Treat. , 28 : 338 – 344 .
  • Chitrakar , R. ; Mizobuchi , K. ; Sonoda , A. ; Hirotsu , T. ( 2010 ) Uptake of bromate ion on amorphous aluminum hydroxide . Ind. Eng. Chem. Res. , 49 : 8726 – 8732 .
  • Chitrakar , R. ; Makita , Y. ; Sonoda , A. ; Hirotsu , T. ( 2011 ) Adsorption of trace levels of bromate from aqueous solution by organo-montmorillonite . Appl. Clay Sci. , 51 : 375 – 379 .
  • Hlavay , J. ; Polyak , K. ( 2005 ) Determination of surface properties of iron hydroxide coated alumina adsorbent prepared for removal of arsenic from drinking water . J. Colloid Interface Sci. , 284 : 71 – 77 .
  • Maliyekkal , S.M. ; Shukla , S. ; Philip , L. ; Nambi , I.M. ( 2008 ) Enhanced fluoride removal from drinking water by magnesia-amended activated alumina granules . Chem. Eng. J. , 140 : 183 – 192 .
  • Lagergren , S. ( 1898 ) About the theory of so-called adsorption of soluble substances . Kungl. Svenska Vetenskapsakad. Handl. , 24 : 1 – 39 .
  • Ho , Y.S. ; McKay , G. ( 1999 ) Pseudo-second-order model for sorption processes . Process Biochem. , 34 : 451 – 465 .
  • Weber , T.W. ; Chakravorti , R.K. ( 1974 ) Pore and solid diffusion models for fixed bed adsorbents . J. Am. Inst. Chem. Eng. , 20 : 228 – 238 .
  • Bhatnagar , A. ; Kumar , E. ; Sillanpää , M. ( 2010 ) Nitrate removal from water by nano–alumina: Characterization and sorption studies . Chem. Eng. J. , 163 : 317 – 323 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.