1. Anshakov A.S., Urbakh E.K., Urbakh A.E., Cherednichenko V.S., Kuzmin M.G. Investigation of thermal plasma generator of technological function. Thermophysics and Aeromechanics. 2015. V. 22. No. 6. Pp. 775-778.
2. Buyantuev S.L., Urkhanova L.A., Khmelev A.B., Lhasaranov S.A., Kondratenko A.S. Pererabotka zoloshlakovykh otkhodov elektrodugovoy plazmoy dlya polucheniya kompozitsionnykh stroitel'nykh materialov [Plasma processing of ash and slag wastes for the production of composite building materials]. Vestnik VSGUTU. 2016. V. 61. No. 4. Pp. 19-26. (rus)
3. Alekseeva I.P., Dymshits O.S., Zhilin A.A., Mikhailov M.D., Khubetsov A.A. Effect of yttrium oxide on the crystallization of glasses of the MgO-Al2O3-SiO2 system, nucleated by a mix of titanium and zirconium dioxides, and the transparency of glass-crystalline materials in the superhigh-frequency spectral region. Journal of Optical Technology. 2015. V. 82. No. 4. Pp. 262-267.
4. Stefanovsky S.V., Myasoedov B.F., Remizov M.B., Kozlov P.V., Belanova E.A., Shiryaev A.A., Zubavichus Y.V. Cesium speciation in aluminophosphate-based glass-crystalline materials for immobilization of high level waste from uranium-graphite channel reactor spent nuclear fuel reprocessing. Doklady chemistry. 2014. V. 457. Pp. 148-153.
5. Kaz'mina O.V., Vereshchagin V.I., Semukhin B.S. Structure and strength of foam-glass-crystalline materials produced from a glass granulate. Glass Physics and Chemistry. 2011. V. 37. No. 4. Pp. 371-377.
6. Chen M.J., Zhang F.S., Zhu J.X. Effective utilization of waste cathode ray tube glass-crystalline silicotitanate synthesis. Journal of Hazardous Materials. 2010. V. 182. No. 1-3. Pp. 45-49.
7. Kaz'mina O.V., Vereshchagin V.I., Abiyaka A.N. Assessment of the compositions and components for obtaining foam-glass-crystalline materials from aluminosilicate initial materials. Glass and Ceramics. 2009. V. 66. No. 3-4. Pp. 82-85.
8. Beregovoy V.A., Sorokin D.S. Steklokristallicheskiye materialy na osnove kremnistykh porod [Glass-ceramic materials based on siliceous rocks]. Regional'naya arkhitektura i stroitel'stvo. 2015. No. 1. Pp. 54-57. (rus)
9. Akhunov D.B., Zhuraev Kh.A. Steklokristallicheskiye materialy na osnove bazal'tov Kutchinskogo mestorozhdeniya [Glass ceramic materials based on basalt from Kuchinskoe deposit]. Sovremennye nauchnye issledovaniya i razrabotki. 2017. No. 3 (11). Pp. 14-17. (rus)
10. Il‟ina V.P. Glass crystal materials made from mineral and technogenic feedstock from Karelia. Glass and Ceramics. 2007. V. 64. No. 9-10. Pp. 318-321.
11. Karayannis V., Moutsatsou A., Domopoulou A. Fired ceramics 100 % from lignite fly ash and waste glass cullet mixtures. Journal of Building Engineering. 2017. V. 14. Pp. 1-6.
12. Volokitin O.G., Vereshchagin V.I., Volokitin G.G., Skripnikova N.K., Shekhovtsov V.V. Analiz protsessov traditsionnogo i plazmennogo plavleniya zoly TETS [Analysis of traditional and plasma melting of ash from thermal power plants]. Tekhnika i tekhnologiya silikatov. 2016. V. 23. No. 3. Pp. 2-5. (rus)
13. Abzaev Yu.A., Volokitin G.G., Skripnikova N.K., Volokitin O.G., Shekhovtsov V.V. Investigation of the melting of quartz sand by low-temperature plasma. Glass and Ceramics. 2015. V. 72. No. 5-6. Pp. 225-227.
14. Volokitin G.G., Skripnikova N.K., Volokitin O.G., Shekhovtsov V.V., Haysundinov A.I. El-ektrodugovyye i elektroplazmennyye ustroystva dlya pererabotki silikatsoderzhashchikh otkhodov [Electric arc and electroplasma devices for processing silicate waste]. Izvestiya vysshikh uchebnykh zavedenii. Fizika. 2014. V. 57. No. 3-3. Pp. 109-113. (rus)