1. Malovichko, A.A., Seleznev, V.S., Vinogradov, Yu.N., Dyagilev, R.A., Gorozhantsev, S.V., Petrova, N.V., Mekhryushev, D.Yu., Starovoit, O.E., Vinogradov, A.N., Gabsatarova, I.P., Daniyalov, M.G., Emanov, A.A., Emanov, A.F., Kurtkin, S.V., Kopylova, G.N., Kugaenko, Yu.A., Levin, Yu.N., Masal’skii, O.K., Pogoda, E.V., Saltykov, V.A., Semibalamut, V.M., Senyukov, S.L., Solov’ev, V.M., Steblov, G.M., Titkov, N.N., Tolochko, V.V., Firstov, P.P., Chebrov, D.V., and Shibaev, S.V., Federal’nyi issledovatel’skii tsentr “Edinaya geofizicheskaya sluzhba Rossiiskoi akademii nauk” (Federal Researching Center “Unified Geophysical Survice of Russian Academy of Sciences), Malovichko, A.A., Ed., Obninsk: FITs. EGS RAN, 2017.
2. Abdrakhimov, V.Z. and Abdrakhimova, E.S., Phase composition of porcelain stoneware based on low-grade kaolin clay and non-ferrous metallurgy waste, Khim. Tekhnol., 2021, vol. 22, no. 6, pp. 274–282. https://doi.org/10.31044/1684-5811-2021-22-6-274-282
3. Khlystov, A.I., Sokolova, S.V., Baranova, M.N., Vasilieva, D.I., and Kholopov, Yu.A., Prospects for using alumina-containing industrial waste in cement production, Ekol. Prom-st.
Ross., 2021, vol. 25, no. 7, pp. 13–19. https://doi.org/10.18412/1816-0395-2021-7-13-19
4. Abdrakhimova, Ye.S. and Abdrakhimov, V.Z., Influence investigation of nanotechnogeneous raw materials and chamotte on structural-rheological properties of ceramic masses and physical-mechanical properties of acidproof things, Khim. Tekhnol., 2018, vol. 19, no. 12, pp. 548–557.
5. Abdrakhimova, E.S. and Abdrakhimov, V.Z., Formation of glaze coatings of clinker bricks based on raw kaolin and aluminnun-containing nanotechnogenic raw materials. Inorg. Mater.: Appl. Res., 2018, vol. 9, no. 4, pp. 588–594. https://doi.org/10.1134/S2075113318040020