SORPTION PRECONCENTRATION AND DETERMINATION OF ANTIMONY AND TELLURIUM ON MODIFIED SILICA GEL
DOI: https://doi.org/10.17721/1728-2209.2019.1(56).3
Keywords:
solid-phase reagents, immobilization, silica gel, ionic associates, solid-phase spectrophotometry, test-methods, Sb(III), Te(IV), pharmaceutical preparationsAbstract
Antimony and its compounds are widely used in industry, making it one of the priority pollutants of air and the aquatic environment. Excess of antimony is selectively concentrated in a thyroid gland, a liver, a spleen. The manifestation of the toxic effect of antimony is a variety of impaired functions of the human body, so the content of this element in drinking water normalizes is at the level of 5 μg/l. Recently, tellurium has also been increasingly the subject of research by analyst chemists. Tellurium is a biologically active element and its concentrations in the environment are strictly regulated. According to sanitary rules and regulations, the maximum allowable concentration of tellurium in drinking water is 0.01 mg/l.
The article is devoted to the elaboration of solid-phase reagents based on the quaternary ammonium salt (QAS) immobilized on silica gel and to the development on this basis of sorption-spectrometric and visual test-methods of the determination of Sb(III) and Te(IV). The mechanism of the interaction between QAS immobilized on silica gel and the anions iodide complex of antimony and tellurium was studied. It was found that it proceeds by the ion-associative mechanism. Conditions of sorption preconcentration of anionic complexes of elements were optimized. For the quantitative sorption of antimony (III), the weight of the sorbent is 0.020 g and the volume of the solution is 25.0 ml. Under these conditions, the anionic complex is sorbed by 98 %. The maximum concentration ratio is 1.25 l/g. The sorption equilibrium in the system is established in 20 minutes. For the quantitative extraction of tellurium (IV), the optimal weight of the sorbent is 0.050 g and a solution volume of 25.0 ml. Under these conditions, the degree of sorption reaches about 80 %. The maximum concentration ratio is 0.4 l/g. The sorption equilibrium in the system is established in 15 minutes. The influence of foreign ions on the extraction degree of the investigated elements, and also on the magnitude of analytical signal, was studied. Sorption-spectrometric and visual test-methods of the determination of Sb(III) and Te(IV) in pharmaceutical preparation "Antimonium tartaricum" and "Tellurium Metalicum"
References
1. Перепилиця О. П. Екохімія та ендоекологія елементів : довідник з екологічного захисту. К. : НУХТ, Екохім., 2004. 736 c.
Perepylytsia O.P. Ecochemistry and Endoecology of Elements: Hand-book of Environmental Protection. Kyiv, NUFT, Ecochem. 2004, 736 p. (In Ukrainian).
2. Токсикологическая химия : учеб. для вузов / под ред. Плетеневой Т. В. М. : ГЭОТАР-Медиа, 2005. 512 c.
Pleteneva T. V. (Ed.) Toxicological chemistry : A textbook for universi-ties. Moscow : HEOTAR- Media, 2005. 512 p. (In Russian).
3. Бандман А. Л., Волкова Н. В., Грекова Т. Д. Вредные химические вещества. Неорганические соединения V–VIII групп : справ. изд. Л. : Химия, 1989. 592 c.
Bandman A. L., Volkova N. V., Hrekova T. D. Harmful chemicals. Inor-ganic compounds of V-VIII groups : ref. ed. Leningrad : Khimija, 1989. 592 p. (In Russian).
4. Фомин Г. С. Вода. Контроль химической, бактериальной и ра-диационной безопасности по международным стандартам : энциклопе-дический справочник. М. : Альтернатива, 1995. 624 с.
Fomin G. S. Water. Control of chemical, bacterial and radiation safety ac-cording to international standards : Encyclopedic Handbook. Moscow : Alternative, 1995. 624 р. (In Russian).
5. Мarczenko Z, Balcerzak M. Spektrofotometryczne metody w analizie nieorganicznej. Warszawa : Wydawnictwo Naukowe PWN, 1998. 526 p.
6. Немодрук А. А. Аналитическая химия сурьмы. М. : Наука, 1978. 220 с.
Nemodruk A. A. Analytical chemistry of antimony. Moscow : Nauka,1978. 220 р. (In Russian).
7. Smichowski P., Camara Y. M. C. Fresenius J. Anal. Chem. 1998. 360. 623–629.
8. Назаренко И. И., Ермаков А. Н. Аналитическая химия селена и теллура. М. : Наука, 1971. 252 с.
Nazarenko I. I., Ermakov A. N. Analytical chemistry of selenium and tellurium. Moscow : Nauka, 1971. 252 p. (In Russian).
9. Johnson R. A., Kwan F. P. Anal. Chem. 1951. 23. 4. 651–653.
10. Amelin V. G., Koroleva O. V. J. Anal. Chem. 2009. 64. 12. 1275–1278.
11. Zaporozhets O. A., Gaver O. M., Sukhan V. V. Russ. Chem. Rev. 1997. 66. 7. 637–646.
12. Zaporozhets O. A., Nadzhafova O. Yu., Verba V. V., Dolenko S. A., Keda T. Ye., Sukhan V. V. Analyst. 1998. 123. 1583–1586.
13. Верба В. В., Запорожець О. А., Сухан В. В., Кравченко С. М., Грушко І. О. Наукові записки НаУКМА. Хімічні науки. 2000. 18. 80–83.
Verba V. V., Zaporozhets O. A., Sukhan V. V., Kravchenko S. M., Hrushko I. O. NaUKMA Research Papers. Chemical sciences. 2000. 18. 80–83 (In Ukrainian).
14. Верба В. В., Запорожець О. А., Сухан В. В. Наукові записки НаУКМА. 2002. 20 (спец. випуск). ІІ. 490–492.
Verba V. V., Zaporozhets O. A., Sukhan V. V. NaUKMA Research Papers. 2002. 20 (special issue). II. 490–492 (In Ukrainian).
15. Верба В. В., Запорожець О. А., Меленний А. Б. Вісн. Київ. ун-ту. Хімія. 2001. 37. 50–53.
Verba V. V., Zaporozhets O. A., Melennyj A. B. Visnyk Kyivs'koho universytetu. Khimiia. 2001. 37. 50–53.
16. Верба В. В., Ярмоленко О. С., Турчин В. О., Запорожець О. А., Сухан В. В. Наукові записки НаУКМА. Хімічні науки і технології. 2005. 42. 35–92.
Verba V. V. Yarmolenko O. S., Turchyn V. O., Zaporozhets' O. A., Sukhan V. V. NaUKMA Research Papers. Chemical sciences and technolo-gy. 2005. 42. 35–92.
17. Запорожец О. А., Наджафова О. Ю., Зубенко О. И., Ищенко В. Б., Трачевский В. В., Сухан В. В. Укр. хим. журн. 1995. 61. 9. 64–69.
Zaporozhets O. A., Nadzhafova O. Yu., Zubenko O. Y., Yschenko V. B., Trachevskyj V. V., Sukhan V. V. Ukr. khim. Zhurnal. 1995. 61. 9. 64–69 (In Russian).
18. Чупахин М. С., Сухановская А. И. Методы анализа чистых хими-ческих реактивов. М. : Химия, 1984. 280 с.
Chupakhin M. S., Sukhanovskaya A. I. Methods of analysis of pure chemicals. Moscow : Khimija, 1984. 280 р. (In Russian).
19. Марченко З. Фотометрическое определение элементов. М. : Мир, 1971. 503 с.
Marchenko Z. Photometric determination of elements. Moscow : Mir, 1971. 503 р. (In Russian).
20. Коростылев П. П. Приготовление растворов для химико-аналитических работ. М. : Наука, 1964. 399 с.
Korostylev P. P. Preparation of solutions for chemical analytical work. Moscow : Nauka, 1964. 399 р. (In Russian).
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