The kinetic sorption of heavy metals from surface water on natural and modified polyethilenimine clinoptilolite of Holinsky deposit

  • Esfir M. Kats researcher in Vernadsky Institute of Geochemistry and Analytical Chemistry of Russian Academy of Science, Moscow
  • Valentina A. Nikashina senior researcher in Vernadsky Institute of Geochemistry and Analytical Chemistry of Russian Academy of Science, Moscow
  • Jana V. Bichkova senior researcher in IGEM RAS, Moscow
Keywords: surface water, natural and modified clinoptilolite, heavy metals, sorption characteristics.

Abstract

The kinetic sorption of heavy metals (HM) from surface water on natural clinoptilolite (CLT) and modified clinoptilolite (PEI-CLT) was investigated with a dynamic methodic. The dynamic experiments were carried out of all heavy metals simultaneously at their low concentrations. ISP-MS method was used for analysis the concentrations of HM in solutions. The breakthrough curves were carried out for 1,0g of sorbents under different line flow rate (0.01, 0.045 and 0.2 cm/sec). The sorption characteristics (the distribution coefficients of HM and film-diffusion coefficients) were calculated for CLT and PEI-CLT under different line flow rate of solution, using the film-diffusion kinetic model and line isotherm sorption. It was shown the satisfactory correspondence between theoretical and experimental breakthrough curves for sorption HM with investigated sorbents. The natural clinoptilolite CLT can be recommended for purification of surface water (pH 6.7) from Cd and Sr; PEI-CLT – from Cr, Cd, Ni, Zn.

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References

1.Nikanorov A.M., Gidrokhimiya, Rostov na Donu, «NOK», 2008, 455 p.
2.Cabrera C., Gabaldon C., Marzal P. J Chem Technol and Biotechnol., 2005, Vol. 80, pp. 477-481.
3.Sprynskyy M., Buszewski B., Terzuk A., J of Colloid and Interface Science., 2006, Vol.304, pp.21-28.
4.Arambula-Villazana V., Solache-Rios M., Olguin M.T., Journal of Inclusion Phenomenaand Macrocyclic Chemistry, 2006, Vol. 55, pp. 237-245.
5.Woinarski A.Z., Process Safty and Environmenal Protection., 2006, Vol. 84 (B2), pp.109-116.
6.Inglezakis V.J, Logizion M.M, Grigoropoulou H.P., J of Colloid and Interface Science, 2004, Vol. 275, pp. 570-576.
7.Kats E.M., Nikashina V.A. in: Natural Zeolites for the Third Millenium. C. Colela and F.A.Mumpton (eds), 2000, pp. 387-393.
8.Nikashina V.A., Kats E.M., Serova I.B., Trudy mezhdunarodnoi konferentsii «Radioaktivnost' posle yadernykh vzryvov i avarii», M., Sankt-Peterburg, Gidrometizdat., 2006, Vol. 3, pp. 449-454.
9. Kats E.M Nikashina V.A Serova I.B, Sorbtsionnye i khromatograficheskie protsessy, 2014, Vol. 14, No 3, pp. 406-412.
10.Kats E.M., Nikashina V.A., Bychkova Ya.V., Sorbtsionnye i khromatograficheskie protsessy, 2013, Vol. 13, No 6, pp. 808-815.
11.Senyavin M.M. et., Osnovy rascheta i optimizatsii ionoobmennykh protsessov M., «Nauka», 1972, 175 p.
12.Nikashina V.A. et al., ZhPKh., 2001, Vol. 74, Issue. 9, pp. 1410.-1412.
13.Gembitskii P.A., Zhuk D.S., Kargin V.A. «Polietilenimin», M., Nauka, 1971, 201 p.
14.Kats E.M., Galkina N.K., Serova I.B., Sorbtsionnye i khromatograficheskie protsessy, 2012, Vol. 12, No 3, pp.363-369.
15.Stefanovic S.C. et al., Microporous and Mesoporous Materials, 2007, Vol.105, pp. 251259.
16.Evsikova L.P., Avtoreferat dissertatsii, Voronezh, 1968. 21 p.
17.Nikashina V.A. et al., Sorbtsionnye i khromatograficheskie protsessy, 2010, Vol. 10, No 6, pp. 949-958.
Published
2019-11-14
How to Cite
Kats, E. M., Nikashina, V. A., & Bichkova, J. V. (2019). The kinetic sorption of heavy metals from surface water on natural and modified polyethilenimine clinoptilolite of Holinsky deposit. Sorbtsionnye I Khromatograficheskie Protsessy, 16(1), 36-43. Retrieved from https://journals.vsu.ru/sorpchrom/article/view/1322