Preview

iPolytech Journal

Advanced search

SORPTION EXTRACTION OF COPPER BY IONITE LEWATIT MONOPLUS TP-220 FROM NITRIC ACID SOLUTIONS OF COPPER CONCENTRATE LEACHING

https://doi.org/10.21285/1814-3520-2018-6-204-212

Abstract

The PURPOSE of the paper is to study the equilibrium in the system ion-exchanger TP-220 - copper-containing solution and kinetic characteristics of Lewatit TP-220 ion-exchanger as applied to the solution after the nitric acid leaching of the copper concentrate of the unpayable ore of the Zhezkazgan deposit. METHODS. Static experiments were carried out to determine sorption equilibrium. Static sorption was conducted in glass jars where the phases were mixed by mechanical agitators. The sample of the sorbent was treated for a certain time by the initial solution at the temperature of 75°C. At the end of the process the phases were separated. The solutions were sampled to analyze the content of copper and other cations. The saturated sorbent was washed with water and analyzed for the content of main components. RESULTS AND THEIR DISCUSSION. It has been determined that the isotherm of copper sorption by ion-exchanger TP-220 confirms high sorption capacity even at extremely low concentrations of copper in the initial solution. The temperature factor in the range from 20 to 500С at a contact time of phases more than 60 minutes does not have any noticeable effect on the ion exchange parameters of the sorbent. CONCLUSIONS. The sorption of copper on the sorbent under investigation features high rate that ensures its maximum capacity even after 60 minute contact at room temperature, i.е. sorbent has good kinetic properties of copper sorption.

About the Authors

S. V. Zakharyan
Scientific Research Center of Innovation Technologies "Kazgidromet" LLC
Russian Federation


L. M. Karimova
Scientific Research Center of Innovation Technologies "Kazgidromet" LLC
Russian Federation


S. S. Naboichenko
Ural Federal University named after the first President of Russia B.N. Yeltsin
Russian Federation


D. A. Rogozhnikov
Ural Federal University named after the first President of Russia B.N. Yeltsin
Russian Federation


References

1. Цогтхангай Д., Мамяченков С.В., Анисимова О.С., Набойченко С.С. Кинетические закономерности выщелачивания медных концентратов азотной кислотой // Известия высших учебных заведений. Цветная металлургия. 2011. № 6. С. 8-12.

2. Мамяченков С.В., Анисимова О.С., Набойченко С.С. Азотнокислое выщелачивание медных концентратов как альтернатива их пирометаллургической переработке // Международная НТК «Приоритетные направления развития науки и технологий». Тула, 2011. С. 215-217.

3. Bekturganov N.S., Pirmatov E.A., Kasymzhanov K.K., Shoinbaev A.T., Iskakova Z.Z. Molybdenite concentrate sulphuric-acid leaching at pyrolusite presence. 11th International Multidisciplinary Scientific Geoconference and EXPO - Modern Management of Mine Producing, Geology and Environmental Protection, SGEM 2011. P. 1171-1174.

4. Rogozhnikov, D.A., Mamyachenkov, S.V., Anisimova, O.S. Nitric Acid Leaching of Copper-Zinc Sulfide Middlings. Metallurgist. 2016. T. 60. P. 229-233.

5. Sudakov D.V., Chelnokov S.Yu., Rusalev R.E., Elshin A. N., Technology and Equipment for Hydrometallurgical Oxidation of Refractory Gold-Bearing Concentrates (ES-Process) Tsvetnye Metally 2017. Vol. 3. P. 40-44.

6. Хурамшина И.З., Никифоров А.Ф., Липунов И.Н., Первова И.Г. Сорбционное извлечение меди (II) из водных растворов природными минеральными сорбентами на основе опал-кристобалитовых пород // Сорбционные и хроматографические процессы. 2014. Т. 14. Вып. 2. C. 338-344.

7. Anderson C.G., Twidwell L.G. Hydrometallurgical processing of gold-bearing copper enargite concentrates. CANADIAN METALLURGICAL QUARTERLY. 2008. T. 47. P. 337-345.

8. Bin Xu, Yongbin Yang, Qian Li, Guanghui Li, Tao Jiang. Fluidized roasting-stage leaching of a silver and gold bearing polymetallic sulfide concentrate. Hydrometallurgy. 2014. Р. 79-82.

9. Wu Z.H., Dreisinger D.B., Urch H., Fassbender S. The kinetics of leaching galena concentrates with ferric methanesulfonate solution. Hydrometallugy. 2014. Vol. 142. P. 121-130.

10. Земскова Л.А., Шевелева И.В., Войт А.В., Емелина Т.Б., Глущенко В.Ю. Сорбция и электросорбция Cu (II) модифицированными углеродными сорбентами // Цветные металлы. 2007. № 2. С. 57-60.

11. Юн А.Б., Захарьян С.В., Каримова Л.М., Терентьева И.В., Серикбай А.У. Исследования по азотнокислому выщелачиванию чернового медного концентрата ЖОФ из руд текущей добычи ТОО «Корпорация Казахмыс» // Абишевские чтения - 2016. Инновации в комплексной переработке минерального сырья: материалы Междунар. науч.-практ. конф. (г. Алматы, 2016 г.). Алматы, 2016. С. 581-583.

12. Описание анионита Lewatit MonoPlus TP 220 [Электронный ресурс]. URL: http//www.yichemicals.com/admin/UploadFile/201112261442837166.pdf (24.02.2018).

13. Kołodyńska D., Sofińska-Chmiel W., Mendyk E., Hubicki Z. Dowex M 4195 and Lewatit TP 220 in heavy metal ions removal from acidic streams. Separation Science and Technology. 2014. Vol. 49. P. 2003-2015.

14. Wołowicz A., Hubickia Z. The use of the chelating resin of a new generation Lewatit MonoPlus TP-220 with the bis-picolylamine functional groups in the removal of selected metal ions from acidic solutions. Chemical Engineering Journal. 2012. Vol. 197. P. 493-508.

15. Подчайнова В.Н., Смирнова Л.Н. Аналитическая химия меди. М.: Изд-во Наука, 1990. 279 с.

16. Никольского Б.П., Романкова П.Г. Иониты в химической технологии. Л.: Изд-во Химия, 1982. 416 с.

17. Кокотов Ю.А., Пасечник В.А. Равновесие и кинетика ионного обмена. Л.: Изд-во Химия, 1970. 336 с.

18. Знаменский Ю.П., Бычков Н.В. Кинетика ионообменных процессов Обнинск: Принтер, 2000. 204 с.


Review

For citations:


Zakharyan S.V., Karimova L.M., Naboichenko S.S., Rogozhnikov D.A. SORPTION EXTRACTION OF COPPER BY IONITE LEWATIT MONOPLUS TP-220 FROM NITRIC ACID SOLUTIONS OF COPPER CONCENTRATE LEACHING. Proceedings of Irkutsk State Technical University. 2018;22(6):204-212. (In Russ.) https://doi.org/10.21285/1814-3520-2018-6-204-212

Views: 223


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2782-4004 (Print)
ISSN 2782-6341 (Online)