118
Views
5
CrossRef citations to date
0
Altmetric
Articles

Application of full factorial design to study the simultaneous removal of copper and zinc from aqueous solution by liquid–liquid extraction

, , &
Pages 2135-2145 | Received 03 Oct 2011, Accepted 23 Aug 2012, Published online: 05 Nov 2012

References

  • Nemerow , N.L. 2007 . Industrial Waste Treatment—Contemporary Practice and Vision for the Future , New York , NY : Elsevier . pp. 260–262, 298–300
  • Jha , M.K. , Kumar , V. and Singh , R.J. 2001 . Review of hydrometallurgical recovery of zinc from industrial wastes . Resour. Conserv. Recycl. , 33 : 1 – 22 .
  • Kurniawan , T.A. , Chan , G.Y.S. , Lo , W.H. and Babel , S. 2006 . Physico-chemical treatment techniques for wastewater laden with heavy metals . Chem. Eng. J. , 118 : 83 – 98 .
  • Adebayo , A.O. and Sarangi , K. 2008 . Separation of copper from chalcopyrite leach liquor containing copper, iron, zinc and magnesium by supported liquid membrane . Sep. Purif. Technol. , 63 : 392 – 399 .
  • Kongolo , K. , Mwema , M.D. , Banza , A.N. and Gock , E. 2003 . Cobalt and zinc recovery from copper sulphate solution by solvent extraction . Miner. Eng. , 16 : 1371 – 1374 .
  • Gouvea , L.R. and Morais , C.A. 2010 . Development of a process for the separation of zinc and copper from sulfuric liquor obtained from the leaching of an industrial residue by solvent extraction . Miner. Eng. , 23 : 492 – 497 .
  • Kyuchoukov , G. and Michaylov , L. 1991 . A novel method for recovery of copper from hydrochloric acid solutions . Hydrometallurgy , 27 : 361 – 369 .
  • Borowiak-Resterna , A. and Szymanowski , J. 2000 . Extractants for copper recovery from chloride solution . J. Radioanal. Nucl. Chem. , 246 ( 3 ) : 657 – 663 .
  • Sud , D. , Mahajan , G. and Kaur , M.P. 2008 . Agricultural waste material as potential adsorbent for sequestering heavy metal ions from aqueous solutions—a review . Bioresour. Technol. , 99 : 6017 – 6027 .
  • Ramakul , P. , Kwanta , N. and Pancharoen , U. 2004 . One-through selective separation of copper, chromium and zinc ions by hollow fiber supported liquid membrane . Kor. J. Chem. Eng. , 21 ( 6 ) : 1212 – 1217 .
  • Mowafy , E.A. and Aly , H.F. 2007 . Extraction and separation of Pd(II), Pt(IV), Fe(III), Zn(II), Cu(II) and Ag(I) from hydrochloric acid solutions with selected cyanamides as novel extractants . J. Hazard. Mater. , 149 : 465 – 470 .
  • Owusu , G. 1998 . Selective extractions of Zn and Cd from Zn-Cd-Co-Ni sulphate solution using di-2-ethylhexyl phosphoric acid extractant . Hydrometallurgy , 47 : 205 – 215 .
  • Jaiswal , A. and Chattopadhayaya , M.C. 2009 . Removal of zinc ion from industrial effluents by hydrotalcite-like compound . Desalin. Water Treat. , 12 : 127 – 132 .
  • Danış , Ü. 2010 . Biosorption of copper (II) from aqueous solutions by Pleurotus cornucopiae . Desalin. Water Treat. , 22 : 117 – 126 .
  • Mellah , A. and Benachour , D. 2006 . The solvent extraction of zinc and cadmium from phosphoric acid solution by di-2-ethylhexyl phosphoric acid in kerosene diluent . Chem. Eng. Process. , 45 : 684 – 690 .
  • Ren , Z. , Zhang , W. , Meng , H. , Liu , Y.M. and Dai , Y. 2007 . Extraction equilibria of copper (II) with D2EHPA in kerosene from aqueous solutions in acetate buffer media . J. Chem. Eng. Data , 52 : 438 – 441 .
  • Vahidi , E. , Rashchi , F. and Moradkhani , D. 2009 . Recovery of zinc from an industrial zinc leach residue by solvent extraction using D2EHPA . Miner. Eng. , 22 : 204 – 206 .
  • Pereira , D.D. , Roch , S.D.F. and Mansur , M.B. 2007 . Recovery of zinc sulphate from industrial effluents by liquid–liquid extraction using D2EHPA (di-2-ethylhexyl phosphoric acid) . Sep. Purif. Technol. , 53 : 89 – 96 .
  • Morais , B.S. and Mansur , M.B. 2004 . Characterization of the reactive test system ZnSO4/D2EHPA in n-heptane . Hydrometallurgy , 74 : 11 – 18 .
  • Seki , Y. , Seyhan , S. and Yurdakoc , M. 2006 . Removal of boron from aqueous solution by adsorption on Al2O3 based materials using full factorial design . J. Hazard. Mater. , 138 : 60 – 66 .
  • Chang , S.H. , Teng , T.T. and Ismail , N. 2011 . Optimization of Cu(II) extraction from aqueous solutions by soybean-oil-based organic solvent using response surface methodology . Water Air Soil Pollut. , 217 : 567 – 576 .
  • Chang , S.H. , Teng , T.T. and Ismail , N. 2011 . Screening of factors influencing Cu(II) extraction by soybean oil-based organic solvents using fractional factorial design . J. Environ. Manage. , 92 : 2580 – 2585 .
  • Tsakiridis , P.E. and Agatzini , S.L. 2004 . Simultaneous solvent extraction of cobalt and nickel in the presence of manganese and magnesium from sulfate solutions by Cyanex 301 . Hydrometallurgy , 72 : 269 – 278 .
  • Tsakiridis , P.E. and Agatzini , S.L. 2004 . Process for the recovery of cobalt and nickel in the presence of magnesium and calcium from sulphate solutions by Versatic 10 and Cyanex 272 . Miner. Eng. , 17 : 535 – 543 .
  • Tsakiridis , P.E. and Agatzini , S.L. 2004 . Process for the recovery of cobalt and nickel in the presence of magnesium from sulphate solutions by Cyanex 272 and Cyanex 302 . Miner. Eng. , 17 : 913 – 923 .
  • Chang , S.H. , Teng , T.T. and Ismail , N. 2010 . Extraction of Cu(II) from aqueous solutions by vegetable oil-based organic solvents . J. Hazard. Mater. , 181 ( 1–3 ) : 868 – 872 .
  • Singh , R K. and Dhadke , P.M. 2002 . Extraction and separation studies of zinc (II) and copper (II) with D2EHPA and PC-88A from perchlorate media . J. Serbian Chem. Soc. , 67 ( 1 ) : 41 – 51 .
  • Lee , P.C. , Li , C.W. , Chen , J.Y. , Li , Y.S. and Chen , S.S. 2011 . Dissolution of D2EHPA in liquid–liquid extraction process: Implication on metal removal and organic content of the treated water . Water Res. , 45 : 5953 – 5958 .
  • Box , G.E.P. , Hunter , J.S. and Hunter , W.G. 1978 . Statistics for experimenters. An Introduction to Design, Data Analysis and Model Building , New York , NY : Wiley . p. 653
  • Palma , M. and Taylor , L.T. 1999 . Statistical design for optimization of extraction of polyphenols from an inert matrix using carbon dioxide-based fluids . Anal. Chim. Acta , 391 : 321 – 329 . était [28]

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.