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ADSORPTION

Adsorption of Nickel on Electric Arc Furnace Slag: Batch and Column Studies

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Pages 388-397 | Received 18 Feb 2013, Accepted 07 Sep 2013, Published online: 17 Jan 2014

REFERENCES

  • Ewecharon , A. ; Thiravetyan , P. ; Wendel , E. ( 2009 ) Nickel adsorption by solution polycrylate grafted activated carbon . J. Hazard. Mater. , 171 : 335 – 339 .
  • Khan , M.A. ; Ngabura , M. ; Choong , T.S.Y. ; Masood , H. ; Chuah , L.A. (2012) Biosorption and desorption of Nickel on oil cake: Batch and column studies. Bioresour. Technol. , 103: 35–42.
  • David , W.O. ( 2006 ) A modified cellulose adsorbent for the removal of nickel (II) from aqueous solution . J. Chem. Tech. & Biotech. , 81 : 1820 – 1828 .
  • Sheng , P.X. ; Ting , Y.P. ; Chen , J.P. ; Hong , L. ( 2004 ) Sorption of lead, copper, cadmium, zinc, and nickel by marine algal biomass: Characterization of biosorptive capacity and investigation of mechanisms . J. Colloid Interf. Sci. , 275 : 131 – 141 .
  • MINAS pollution control acts, rules, notification issued there under Central Pollution Control Board, Ministry of Environment and Forests, Government of India, New Delhi, September 2001 .
  • Kwon , J.S. ; Yun , S.T. ; Lee , J.H. ; Kim , S.O. ; Jo , H.Y. ( 2010 ) Removal of divalent heavy metals (Cd, Cu, Pb, and Zn) and arsenic (III) from aqueous solutions using scoria: Kinetics and equilibria of sorption . J. Hazard. Mater. , 174 : 307 – 313 .
  • Espinoza-Quiñones , F.R. ; Módenes , A.N. ; Theodoro , P.S. ; Palácio , S.M. ; Trigueros , D.E.G. ; Borba , C.E. ; Abugderah , M.M. ; Kroumov , A.D. ( 2012 ) Optimization of the iron electro-coagulation process of Cr, Ni, Cu, and Zn galvanization by-products by using response surface methodology . Sep. Sci. & Tech. , 47 ( 5 ): 688 – 699 .
  • Khan , M.A. ; Lee , S.-H. ; Kang , S. ; Paeng , K.-J. ; Lee , G. ; Oh , S.-E. ; Jeon , B.-H. ( 2011 ) Adsorption studies for the removal of methyl tert-butyl ether on various commercially available GACS from an aqueous medium . Sep. Sci. & Tech. , 46 ( 7 ): 1121 – 1130 .
  • Khan , M.A. ; Ahn , Y.-T. ; Kumar , M. ; Lee , W. ; Min , B. ; Kim , G. ; Cho , D.-W. ; Park , W.-B. ; Jeon , B.-H. ( 2011 ) Adsorption studies for the removal of nitrate using modified lignite granular activated carbon . Sep. Sci. & Tech. , 46 ( 16 ): 2575 – 2584 .
  • Altun , I. ; Yilmaz , I. ( 2002 ) Study on steel furnace slags with high MgO as additive in Portland cement . Cem. and Concr. Res. , 32 : 1247 – 1249 .
  • Stock , A.F. ; Colin , M.I. ; Taylor , I.F. ( 1996 ) Skidding Characteristics of Pavement Surface Incorporating Steel Slag Aggregates, Transport Research Record 1545, National Research Council, Washington, DC , pp 35 – 40 .
  • Emery , J.J. ( 1982 ) Slag Utilization in Pavement Construction. Extending Aggregate Resources ASTM, STP 774 American Society for Testing and Materials , pp 95 – 118 .
  • Beh , C. ; Chuah , L. ; Choong , T.S.Y. ; Kamarudzaman , M.Z.B. ; Abdan , K. ( 2010 ) Adsorption study of electric arc furnace slag for the removal of manganese from solution , Am. J. Appl. Sci. , 7 : 442 – 446 .
  • Dimitrova , S.V. ( 2002 ) Use of granular slag column for lead removal . Water Res. , 36 : 4001 – 4008 .
  • Meng , M. ; Feng , Y. ; Zhang , M. ; Liu , Y. ; Ji , Y. ; Wang , J. ; Wua , Y. ; Yan , Y. ( 2013 ) Highly efficient adsorption of salicylic acid from aqueous solution by Wollastonite-based imprinted adsorbent: A fixed-bed column study . Chem. Eng. J. , 225 : 331 – 339 .
  • Goertzen , S.L. ; Theriault , K.D. ; Oickle , A.M. ; Tarasuk , A.C. ; Andreas , H.A. ( 2010 ) Standardization of the Boehm titration. Part I. CO2 expulsion and endpoint determination . Carbon , 48 : 1252 – 1261 .
  • Eddy , M. ( 1991 ) Wastewater Engineering: Treatment, Disposal, and Reuse ; McGraw-Hill : New York .
  • Malkoc , E. ; Nuhuoglu , Y. ( 2006 ) Removal of Ni(II) from aqueous solution using waste tea factory: Adsorption on a fixed-bed column . J. Hazard. Mater. , 40 : 326 – 336 .
  • Yanli , M. ; Hongwei , H. ; Yongsheng , Y. ; Hongxiang , O. ( 2012 ) A novel extracellular biopolymer produced from pseudonas fluoresces C-2: Preparation, characterization, and adsorption behaviors toward nickel (II) ions in aqueous solution . Inter. J. Mater. Struc. Intergr. , 6 : 74 – 93 .
  • Malkoc , E. ( 2006 ) Ni (II) removal from aqueous solutions using cone biomass of Thuja orientalis . J. Hazard. Mater. , 137 : 899 – 908 .
  • Kumar , P.S. ; Kirthika , K. ( 2009 ) Equilibrium and kinetic study of adsorption of nickel from aqueous solution onto bael tree leaf powder . Eng. Sci. Technol. , 40 : 351 – 363 .
  • Ozer , A. ; Ozer , D. ( 2004 ) The adsorption of copper (II) ions on to dehydrated wheat bran (DWB): Determination of the equilibrium and thermodynamic parameters . Process Biochem. , 39 : 2183 – 2191 .
  • Ozacar , M. ; Sengil , A. ( 2005 ) Adsorption of complex dyes from aqueous solution by pine sawdust . Bioresour. Technol. , 7 : 791 – 795 .
  • Ofomaja , A.E. ( 2010 ) Intraparticle diffusion process for lead (II) biosorption onto mansonia wood Sawdust . Bioresour. Technol. , 101 : 5868 – 5876 .
  • Langmuir , I. ( 1916 ) The adsorption of gases on plane surface of glass, mica and platinum . J. Amer. Chem. Soc. , 40 : 1361 – 1403 .
  • Freundlich , H. ( 1985 ) Uber die. Adsorption in lunsungen . J. Phys. Chem. , 57 : 347 – 470 .
  • Redlich , O. ; Peterson , D.L. ( 1959 ) A useful adsorption isotherm . J. Phys. Chem. , 63 : 1024 – 1026
  • Lagergren , S. ( 1898 ) About the theory of so-called adsorption of soluble substances . Handlingar Band , 24 : 1 – 39 .
  • Ho , Y.S. ; Ng , J.C.Y. ; McKay , G. ( 2000 ) Kinetics of pollutant sorption by biosorbents: A review . Sep. Purif. Methods , 29 : 189 – 232 .
  • Sivakumar , P. ; Palanisamy , P.N. ( 2009 ) Packed bed column studies for the removal of Acid blue and Basic red 29 using non-conventional adsorbent . Ind. J. Chem. Eng. , 16 : 301 – 307 .
  • Fox , C.R. ; Kennedy , D.C. Conceptual Design of Adsorption Technology: A Step-by-step Approach to Process Evaluation and Application ; Slejko F. L. (Ed.), pp 91 – 165 . Marcel Dekker : New York .
  • Surinder , S. ; Lokesh , K.V. ; Sambi , S.S. ; Sharma , S.K. ( 2008 ) Adsorption behavior of Ni(II) from water onto Zeolite X: Kinetic and Equilibrium studies. Proceeding of the World Congress on Engineering and Computer Science , pp 978 – 988 .
  • Cesar , V. ; Jaime , A. ; Arevato , E. ( 2010 ) Modeling of the Ni (II) removal from aqueous solution onto grape stack wastes in fixed-bed column . Journal of Hazardous Material , 174 : 144 – 150 .
  • Pahlavanzadeh , H. ; Keshtkar , A.R. ; Safdari , J. ; Abadi , Z. ( 2010 ) Biosorption of nickel (II) from aqueous solution by brown algae: Equilibrium, dynamic and thermodynamic studies . Journal of Hazardous Materials , 175 ( 1–3 ): 304 – 310 .
  • Wagner , A.C. ; Vignado , C. ; Juliane , F. ( 2008 ) Ni (II) removal from aqueous effects by silylated clays . Journal of Hazardous Material , 153 : 1240 – 1247 .
  • Sen Gupta , B. ; Curran , M. ; Hasan , S. ; Ghosh , T.K. ( 2009 ) Adsorption characteristics of Cu and Ni on Irish peat moss . Journal of Environmental Management , 90 ( 2 ): 954 – 960 .
  • Vijayaraghavan , K. ; Jegan , J. ; Palanivelu , K. ; Velan , M. ( 2004 ) Removal of nickel (II) ions from aqueous solution using crab shell particles in a packed bed up-flow column . Journal of Hazardous Materials , 113 ( 1–3 ): 223 – 230 .
  • Littui , H. ; Yuan yuan , S. ; Tao , Y. ; Li , L. ( 2011 ) Adsorption behavior of Ni (II) on Lotus stalk derived active carbon by phosphoric acid activation . Desalination , 268 : 12 – 19 .
  • Vieira , M. ; Neto , A. ; Gimenes , M. ; da Silva , M. ( 2010 ) Sorption kinetics and equilibrium for the removal of nickel ions from aqueous phase on calcined Bofe bentonite clay . Journal Hazardous Material , 177 ( 1–3 ): 362 – 371 .
  • Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/lsst.

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