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PUBMED FOR HANDHELDS

Journal Abstract Search


277 related items for PubMed ID: 17499920

  • 21. Removal of Cu(II) from aqueous solution by agricultural by-product: peanut hull.
    Zhu CS, Wang LP, Chen WB.
    J Hazard Mater; 2009 Sep 15; 168(2-3):739-46. PubMed ID: 19297086
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  • 22. Biosorption of arsenic from aqueous solution using agricultural residue 'rice polish'.
    Ranjan D, Talat M, Hasan SH.
    J Hazard Mater; 2009 Jul 30; 166(2-3):1050-9. PubMed ID: 19131161
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  • 23. Modeling batch kinetics of copper ions sorption using synthetic zeolite NaX.
    Svilović S, Rusić D, Stipisić R.
    J Hazard Mater; 2009 Oct 30; 170(2-3):941-7. PubMed ID: 19524364
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  • 24. Biosorption of Cu(II) from aqueous solutions by mimosa tannin gel.
    Sengil IA, Ozacar M.
    J Hazard Mater; 2008 Sep 15; 157(2-3):277-85. PubMed ID: 18289780
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  • 26. The removal of uranium(VI) from aqueous solutions onto activated carbon: kinetic and thermodynamic investigations.
    Mellah A, Chegrouche S, Barkat M.
    J Colloid Interface Sci; 2006 Apr 15; 296(2):434-41. PubMed ID: 16300778
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  • 27. Removal of copper ions by the filamentous fungus, Rhizopus oryzae from aqueous solution.
    Bhainsa KC, D'Souza SF.
    Bioresour Technol; 2008 Jun 15; 99(9):3829-35. PubMed ID: 17804218
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  • 33. Removal of copper ions from aqueous solution by tree fern.
    Ho YS.
    Water Res; 2003 May 15; 37(10):2323-30. PubMed ID: 12727241
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  • 34. Biosorption of nickel from aqueous solutions by Acacia leucocephala bark: Kinetics and equilibrium studies.
    Subbaiah MV, Vijaya Y, Kumar NS, Reddy AS, Krishnaiah A.
    Colloids Surf B Biointerfaces; 2009 Nov 01; 74(1):260-5. PubMed ID: 19716275
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  • 35. A comprehensive study on removal and recovery of copper(II) from aqueous solutions by NaOH-pretreated Marrubium globosum ssp. globosum leaves powder: potential for utilizing the copper(II) condensed desorption solutions in agricultural applications.
    Kililç M, Yazilcil H, Solak M.
    Bioresour Technol; 2009 Apr 01; 100(7):2130-7. PubMed ID: 19097885
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  • 36. Sorption potential of impregnated charcoal for removal of heavy metals from phosphoric acid.
    El-Sofany EA, Zaher WF, Aly HF.
    J Hazard Mater; 2009 Jun 15; 165(1-3):623-9. PubMed ID: 19038497
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  • 37. Efficiency of aluminum-pillared montmorillonite on the removal of cesium and copper from aqueous solutions.
    Karamanis D, Assimakopoulos PA.
    Water Res; 2007 May 15; 41(9):1897-906. PubMed ID: 17374545
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  • 38. Adsorption of direct dyes from aqueous solutions by carbon nanotubes: determination of equilibrium, kinetics and thermodynamics parameters.
    Kuo CY, Wu CH, Wu JY.
    J Colloid Interface Sci; 2008 Nov 15; 327(2):308-15. PubMed ID: 18786679
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  • 40. Sorption isotherm and kinetic modeling of aniline on Cr-bentonite.
    Zheng H, Liu D, Zheng Y, Liang S, Liu Z.
    J Hazard Mater; 2009 Aug 15; 167(1-3):141-7. PubMed ID: 19171429
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