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1. RAO, G., LU, C., SU, F. 2007. Sorption of divalent metal ions from aqueous solution by carbon nanotubes: A review. Sep. Purif. Technol., 58(1), pp. 224–231.Search in Google Scholar

2. DOULA, M. K.: Synthesis of a clinoptilolite-Fe system with high Cu sorption capacity. Chemosphere, 67(4), pp. 731–40.10.1016/j.chemosphere.2006.10.07217169399Search in Google Scholar

3. SVILOVIĆ, S., RUSIĆ, D., STIPISIĆ, R. 2009. Modeling batch kinetics of copper ions sorption using synthetic zeolite NaX. J. Hazard. Mater, 170(2–3), pp. 941–7.Search in Google Scholar

4. SCHWERTMANN, U., CORNELL, R. M. 1991. Iron Oxides in the Laboratory, Preparation and Characterization. Germany, VCH Verlags-gesellschaft mbH.Search in Google Scholar

5. BARLOKOVÁ, D., ILAVSKÝ, J. 2012. Modified clinoptilolite in the removal of iron and manganese from water. Slovak J. Civ. Eng., XX(3) pp. 1–8.Search in Google Scholar

6. WINGENFELDER, U., HANSEN, C., FURRER, G., SCHULIN, R. 2005. Removal of heavy metals from mine waters by natural zeolites. Environ. Sci. Technol., 39(12), pp. 4606–4613.Search in Google Scholar

7. CHMIELEWSKÁ, E., HODOSSYOVÁ, R., BUJDOŠ, M. 2013. Kinetic and thermodynamic studies for phosphate removal using natural adsorption materials. Polish J. Environ. Stud., 22(5), pp. 1307–1316.Search in Google Scholar

8. Barloková, D., Ilavský, J. 2010. Removal of Iron and Manganese from Water Using Filtration by Natural Materials, 19(6), pp. 1117–1122.Search in Google Scholar

9. ABDEL SALAM, O. E., REIAD, N. A., El SHAFEI, M. M. 2011. A study of the removal characteristics of heavy metals from wastewater by low-cost adsorbents. J. Adv. Res., 2(4), pp. 297-303.Search in Google Scholar

10. KULKARNI, R. M. G., SRINIKETHAN, V. S. K. 2013. Equilibrium and kinetic studies for the adsorption of cadmium ion on Zeolite 4A, 3(2012), pp. 158–160.Search in Google Scholar

11. STATE, K., STATE, E. 2012. Langmuir, Freundlich, Temkin and Dubinin – Radushkevich Isotherms Studies of Equilibrium Sorption of Zn 2 + Unto Phosphoric Acid Modified Rice Husk. IOSR J. Appl. Chem., 3(1), pp. 38–45.Search in Google Scholar

12. PANDEY, P. K., SHARMA, S. K. SAMBI, S. S. 2010. Kinetics and equilibrium study of chromium adsorption on zeoliteNaX. Int. J. Environ. Sci. Technol., 7(2), pp. 395–404.Search in Google Scholar

13. HUI, K. S., CHAO, C. Y. H. and KOT, S. C. 2005. Removal of mixed heavy metal ions in wastewater by zeolite 4A and residual products from recycled coal fly ash. J. Hazard. Mater, 127, pp. 89–101.Search in Google Scholar

14. LAGERGREN, S. 1898. About the theory of so-called adsorption of soluble substances. Kung. Sven. Veten. Hand. 24, 1–39.Search in Google Scholar

15. HO, Y.S., McKAY, G. 1999. Pseudo-second order model for sorption processes. Process Biochem. 34, 451–465.Search in Google Scholar

16. SIROTIAK, M., BARTOŠOVÁ, A., BLINOVÁ, L. 2014. UV-VIS spectrophotometric determinations of selected elements in modelled aqueous solutions. Journal of Environmental Protection, Safety, Education and Management,1. ISSN 1339-5270Search in Google Scholar

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