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2013 | 22 | 5 |

Tytuł artykułu

Kinetic and thermodynamic studies for phosphate removal using natural adsorption materials

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Batch adsorption experiments were carried out to study the kinetics and thermodynamics of phosphate removal from model solutions on the surfaces of some selected adsorbents. The data obtained were analyzed using two reaction-based kinetic models and a diffusion-based model. In order to examine the extent to which diffusion participates in this adsorption process, the data were processed by the Weber-Morris mass transfer model. The Freundlich model represented a slightly better description of phosphate adsorption onto slovakite and GEH¹⁰⁴ than onto clinoptilolite-rich tuff, while the Redlich-Peterson model yields a better fit for phosphate adsorption onto clinoptilolite-rich tuff. Adsorption onto montmorillonite proceeds best using the Sips isotherm model. The calculated ΔG° values show that under standard conditions the adsorption of phosphate onto all adsorbents examined occurs spontaneously.

Wydawca

-

Rocznik

Tom

22

Numer

5

Opis fizyczny

p.1307-1316,fig.,ref.

Twórcy

  • Faculty of Natural Sciences, Comenius University, Mlynska dolina B2, 842 15 Bratislava, Slovak Republic
  • Faculty of Natural Sciences, Comenius University, Mlynska dolina B2, 842 15 Bratislava, Slovak Republic

Bibliografia

  • 1. DRAGAN E.S., DINU M.V. Removal of copper ions from aqueous solution by adsorption on ionic hybrids based on chitosan and clinoptilolite. Ion Exchange Lett. 2, 15, 2009.
  • 2. YOON K.B., LEE E.A., JEON E., LEE Y.J. Process for preparing porous hybrid comprising zeolite and chitosan and porous hybrid prepared thereby. US Patent Application, Publ. No.: US 2006/ 0135360 A1, 2006.
  • 3. VANGRONSVELD J, STERCKX J., VAN ASSCHE F., CHIJSTERS H. Rehabilitation studies on an old non-ferrous waste dumping ground: effects of revegetation and metal immobilization by beringite. J. Geochem. Explor. 52, 221, 1995.
  • 4. BABEL S., KURNIAWAN T.A. Low-cost adsorbents for heavy metals uptake from contaminated water: a review. J. Hazard. Mater. B97, 219, 2003.
  • 5. PITTER P. Hydrochemie, SNTL, Praha, 456, 2009.
  • 6. http://www.vurup.sk/products/molecularsieves/general/ page1/slovak.html [accessed 2011-07-25].
  • 7. VASS D., KONEČNÝ V., ELEČKO M., MILIČKA J., SNOPKOVÁ P., ŠUCHA V., KOZÁČ J., ŠKRABANA R. Alginite – a new resource of Slovak mineral potential (repository Pinciná). Mineralia Slovaca 29, 1, 1997.
  • 8. RAJIC N., STOJAKOVIC D., JEVTIC S., ZABUKOVEC LOGAR N., KOVAC J., KAUCIC V. Removal of aqueous manganese using the natural zeolitic tuff from the Vranjska Banja in Serbia. J. Hazard. Mater. 172, 1450, 2009.
  • 9. ZHOU Y. (Ed.) Bio-Inspired Nanomaterials and Nanotechnology. Nova Biomedical Books, New York, 301, 2010.
  • 10. INGLEZAKIS V.J., POULOPOULOS S.G. Adsorption, Ion Exchange and Catalysis: Design of Operations and Environmental Applications, Elsevier, Amsterdam, 602, 2006.
  • 11. LAGERGREN S. To Theory for so called Adsorption of Solutes. Kungl. Svenska vetenskapsakademiens handlingar, 24, 1, 1898 [In German].
  • 12. HO Y.S. Citation review of Lagergren kinetic rate equation on adsorption reactions Scientometrics 59, 171, 2004.
  • 13. ALPAT S.K., OZBAYRAK O., ALPAT S., AKCAY H. The adsorption kinetics and removal of cationic dye, Toluidine Blue O, from aqueous solution with Turkish zeolite. J. Hazard. Mater. 151, 213, 2008.
  • 14. ARGUN M.E. Use of clinoptilolite for the removal of nickel ions from water: Kinetics and Thermodynamics. J. Hazard. Mater 150, 587, 2008.
  • 15. WEBER W.J. JR., MORRIS J.C. Removal of biologically resistant pollutants from waste waters by adsorption. In: Advances in Water Pollution Research, Pergamon Press, New York, pp. 231-266, 1962.
  • 16. SAMEŠOVÁ D., LADOMERSKÝ J. The contamination of surface water and soil in biosphere, Ekologia Ekologia 3, 190, 2003.
  • 17. CHMIELEWSKÁ E., SABOVÁ L., GÁPLOVSKÁ K., ČAPLOVIČOVÁ M. Functionally graded mesoporous zeolitic adsorbents in order to promote the pollutants removal. Kuwait J. Sci. Eng. 35, 1, 2008.
  • 18. www.zeocem.sk [accessed 2011-07-25].
  • 19. www.geh-wasserchemie.de [accessed 2011-07-30].
  • 20. GALAMBOŠ M., ROSSKOPFOVÁ O., KUFČÁKOVÁ J., RAJEC P. Utilization of Slovak Bentonites in deposition of high-level radioactive waste and spent nuclear fuel. J. Radioanal. Nucl. Ch. 288, 765, 2011.
  • 21. HO Y.S., MCKAY G. Sorption of dye from aqueous solution by peat. Chem. Eng. J. 70, 115, 1998.
  • 22. HO Y.S. Review of second-order models for adsorption system. J. Hazard. Mater. 136, 681, 2006.
  • 23. WEBER W.J. JR., MORRIS J.C. Kinetics of adsorption on carbon from solution. J. Sanitary Eng. Div. – ASCE 89, 31, 1963.
  • 24. MICHELSON L.D., GIDEON P.G., PACE E.G., KUTAL L.H. Removal of soluble mercury from wastewater by complexing technique. US Dept Industry, Office of the Water Research and Technology, Bull. No. 74, 1975.
  • 25. HONG S., WEN CH., HE J., GAN F., HO Y. Adsorption thermodynamics of Methylene Blue onto bentonite. J. Hazard. Mater. 167, 630, 2009.
  • 26. BHATTACHARYYA K.G., GUPTA S.S. Adsorption of a few heavy metals on natural and modified kaolinite and montmorillonite: A review. Adv. Colloid Interfac. 140, 114, 2008.
  • 27. YAN L., XU Y. YU H., XIN X., WEI Q., DU B. Adsorption of phosphate from aqueous solution by hydroxy-aluminum, hydroxy-iron and hydroxy-iron-aluminum pillared bentonites. J. Hazard. Mater. 179, 244. 2010.
  • 28. TOMEČKOVÁ V., REHÁKOVÁ M., MOJŽIŠOVÁ G., MAGURA J., WADSTEN T., ZELENÁKOVÁ K. Modified natural clinoptilolite with quercetin and quercetin dihydrate and the study of their anticancer activity. Micropor. Mesopor. Mater. 147, 59, 2012.
  • 29. BARBALACE K. Periodic Table of Elements – Sorted by Ionic Radius. Environmental Chemistry.com, 1995-2010 http://klbprouctions.com (accessed 2010-7-03).
  • 30. ŠERŠEŇ F., PAVLÍKOVÁ S., JESENÁK K., SZÖCS V., ČÍK G. Effect of methylene blue and chlorophyllin embedded in natural zeolite on algae growth in medium polluted by chlorophenol. Fresenius Environ. Bull. 20, 2271, 2011.
  • 31. GALAMBOŠ M., SUCHÁNEK P., ROSSKOPFOVÁ O. Sorption of anthropogenic radionuclides on natural and synthetic inorganic sorbents. J. Radioanal. Nucl. Chem. 293, 613, 2012.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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