Silica gel with covalently immobilized thiosemicarbazide for dynamic preconcentration of copper(II) and zinc(II)
Abstract
А new thiosemicarbazide modified silica gel sorbent was prepared and applied for preconcentration of Cu(II) and Zn(II) prior to the measurement by X-ray fluorescence spectroscopy. The optimization of some analytical parameters affecting the adsorption of the analyte such as sample flow rate and volume, eluent condition, and interfering substances were investigated. The sorbent was used to remove Сu(II) and Zn(II) in a dynamic mode. Changing the speed of pumping solution from (0.5 ml / min to 4.5 ml / min ) as an increase in volume from 50 ml to 2000 ml with levels of concentrations did not affect the recovery of Cu(II) and Zn(II). The conditions for the dynamic concentration, and X-ray fluorescence determination of Cu(II) and Zn(II) on the resultant complexing silica from aqueous samples with a total salinity of 35 g / l , containing equimolar amounts of Ni(II), Co(II), Cd(II). Established preservation sorption capacity of silica gel with respect to Cu(II), Zn(II) after 10 cycles of sorption – desorption.
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2. Bagrovskaya N.A., Alekseeva O.V., Nanoscale and nanostructured materials and coatings . 2012, Vol. 48, No 2, pp. 197-200 DOI: 10.1134/S2070205112020025
3.Hafez M.A.H, Kenawy I.M.M, Akl M.A., Lashein R.R., Talanta, 2001, Vol. 53, No 4-5, pp. 749-760. DOI: 10.1016/S00399140(00)00524-5
4.Gericke M., Trygg J., Fardim P., Chem. Rev., 2013, Vol. 113, No7, pp 4812-4836. DOI: 10.1021/cr300242j
5.Voronkov M.G., Vlasova N.N., Pozhidaev Yu.N., Applied Organometallic Chemistry, 2000, Vol. 14, pp. 287-303. DOI:10.1002/(SICI)1099-0739(200006)14:6<287:: AID-AOC989>3.0.CO;2-Y
6. Bilba D., Bejan D., Tofan L., Croatica Chemical Acta, 1998, Vol. 71, № 1, pp. 155178.
7.Margui E., Van Grieken R., Fontas C., Hidalgo M. et al., Applied Spectroscopy Rev., 2010, Vol. 45, pp. 179-205. DOI: 10.1080/05704920903584198
8.Malofeeva G.I., Petrukhin O.M., Spivakov B.Ia., Ros. Khim. Zhurn. (Zhurn. Ros. Khim. obshchestva im. D.I. Mendeleeva), 2005, Vol. 49, No 2 Z, pp. 131-136.
9 Joselito P. Quirino, Maria T. Dulay, Bryson D. Bennett, Richard N. Zare , Anal. Chem., 2001. Vol. 73, pp 5539-5543. DOI: 10.1021/ac015522r.
10. Temerdashev Z.A., Konshina Dzh.N., Konshin V.V., Logacheva E.Yu., J. of Analytical Chemistry, 2011, Vol. 66, No 10, pp. 930936.
DOI: 10.1134/S1061934811100157
11.Temerdashev Z.A., Konshin V.V., Konshina Dzh.N., Logacheva E.Yu. Patent RU № 2417231, 2011.
12.Konshin V.V., Konshina Dzh. N., Temerdashev Z.A., Open'ko V.V. Patent RU № 2564337, 2015.
13.Konshina D.N., Konshin V.V., Open’ko V.V., Temerdashev Z.A., Gurinov A.A., Separation Science and Technology, 2016, Vol. 51, No 7, pp. 1103-1111. DOI: 10.1080/01496395.2016.1143005
14.Open'ko V.V. Diss. kand. khim. nauk. Krasnodar, 2014, 158 p.
15.Khering R. Khelatoobrazuiushchie ionoobmenniki. Moskva, Mir Publ., 1971, 279 p.