Glauconite-containing overburden is a promising raw material for the synthesis of glasses for various purposes
https://doi.org/10.29235/1561-8331-2023-59-2-169-176
Abstract
The results of a study on the use of glauconite-containing overburden rocks of the Novodvorskoye deposit of the Pinsk district of the Brest region to produce glasses for various purposes are presented. The compositions of raw materials in the system «glauconite-containing rock – chalk – iron oxide – soda ash» have been developed, the limiting amount of the raw components and basic oxides in glasses have been optimized. It has been established that the main criterion for obtaining high-quality glasses is a rational combination of refractory and low-melting oxides, which ensures the homogeneity of glasses, working viscosity, the ability to form in various ways, the absence of a tendency to crystallization, black color in the mass, as well as a complex of satisfactory physical and chemical properties. The results of the study confirmed the prospects of using the glauconite-containing overburden for the synthesis of glasses for various purposes, which will contribute to the rational use of natural resources and associated minerals of the Novodvorskoye deposit of the Republic of Belarus, and will improve the environmental situation in the areas adjacent to the deposit.
About the Authors
S. E. BarantsevaBelarus
Barantseva Svetlana E. – Ph. D. (Engineering), Associate
Professor, Senior Researcher
13a, Sverdlov Str., 220006, Minsk
Yu. A. Klimosh
Belarus
Klimosh Yuri A. – Ph. D. (Engineering), Associate Professor, Dean
13a, Sverdlov Str., 220006, Minsk
A. V. Pospelov
Belarus
Pospelov Andrey V. – Junior Researcher
13a, Sverdlov Str., 220006, Minsk
I. M. Azaranka
Belarus
Azaranka Irina M. – Junior Researcher
13a, Sverdlov Str., 220006, Minsk
M. A. Kurylovich
Belarus
Kurylovich Maryia A. – Trainee Junior Researcher
13a, Sverdlov Str., 220006, Minsk
References
1. Barantseva S. E., Poznyak A. I., Klimosh Yu. A., Gundilovich N. N. Use of Igneous Rock from Belarus for Synthesis of Glasses, Petrositalls, and Cast Stone. Glass and Ceramics, 2019, vol. 76, no. 7–8, pp. 265–269. https://doi.org/10.1007/s10717- 019-00180-9
2. Barantseva S. E., Pazniak A. I., Klimosh Y. A., Azaranka I. M., Hundzilovich N. N., Pospelov F. V. Heat-insulating porous material based on glauconite-containing sands and aleurites of the Novodvorskoye deposit of the Republic of Belarus. Vestsi Natsyyanal’nai akademii navuk Belarusi. Seryya khimichnyh navuk = Proceedings of the National Academy of Science of Belarus. Chemical series, 2021, vol. 57, no. 4, pp. 463–471 (in Russian). https://doi.org/10.29235/1561-8331-2021-57-4-463-471
3. Bobkova N. M., Papko L. F. Chemical technology of glass and glass-ceramics: workbook. Minsk: BSTU, 2005. 196 p. (in Russian).
4. Dvortsin M. D., Yusim V. N. Technodynamics: Fundamentals of the theory of formation and development of technological systems. Moscow: Diksi Publ., 1993. 317 p. (in Russian).
5. Kuz’menkova O. F., Strel’tsova G. D., Minenkova T. M., Lappo G. A., Kachanko G. B., Laptsevich A. G., Lugin V. G., Mankevich S. S. Glauconite-bearing rocks of the Pinsky prospect (Belarus). Geologiya i mineral’no-syr’evye resursy zapada Vostochno-Evropeiskoi platformy: problemy izucheniya i ratsional’nogo ispol’zovaniya = Geology and Mineral Raw Materials of the West of Eastern European Platform: Problems of Rational Nature Management Study. Minsk: StroyMediaProekt Publ., 2017, pp. 172–176 (in Russian).
6. Pavlushkin N. M. (ed.). Glass. A Handbook. Moscow: Stroyizdat Publ., 1973, pp. 154–158; 390–409 (in Russian).