[1]
А.А. Nikiforov, Е.А. Malov, N.К. Skripnikova, О.G. Volokitin, Research of plasma technology silicate refractory melts receiving. Thermophysics and aeromechanics. (2009) 159–163.
DOI: 10.1007/s11510-009-0015-9
Google Scholar
[2]
O.G. Volokitin, Research of physical characteristics of silicate melt stream in the conditions of additional heating, Vestnik ТGASU. (2010) 117–120.
Google Scholar
[3]
S. Yoshizawa, M. Tanaka, A.V. Shekdar, Global Trends in Waste Generation. Global Symposium on Recycling: Waste Treatment and Clean Technology,. (2004) 1541–1552.
Google Scholar
[4]
G.R. Butkevich Problems of involvement of mining production wastes in economic activity / Building materials (2013) 62–66.
Google Scholar
[5]
L. Barbieri, T. Manfredini, I. Queralt, M. Romero, Vitrification of fly ash from thermal power station. Glass Technology (1997) 165–170.
Google Scholar
[6]
V.I. Vereschagin, А.Е. Buruchenko, I.V. Kaschuk, Possibilities of use of secondary raw materials for receiving construction ceramics, Building materials. (2000) 20-22.
Google Scholar
[7]
А.D. Shiltsina, V.I. Vereschagin, Use of feldspar raw materials of Khakassia for receiving ceramic tiles, Glass and Ceramics. (1999) 7-9.
Google Scholar
[8]
ML Ovecog, Microstructural characterization and physical properties of a slag-based glass-ceramic crystallized at 950 and 1100 C. Journal of the European Ceramic Society (1998) 161–168.
DOI: 10.1016/s0955-2219(97)00094-0
Google Scholar
[9]
O.G. Volokitin, N.K. Skripnikova, G.G. Volokitin, V.I. Vereschagin, V.V. Shehovcov, Mineral fibre, produced in device of low temperature plasma from burning products of coal and oil shales. Building materials (2013) 17-22.
Google Scholar