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Published in: Glass and Ceramics 9-10/2019

28-01-2019 | WASTES INTO PRODUCTION

Optimal Cooling Rate of Porous Fill Based on Liquid-Glass Compositions

Author: E. S. Abdrakhimova

Published in: Glass and Ceramics | Issue 9-10/2019

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Abstract

The composition and a method of production are proposed for high-porosity materials in low-temperature foaming of liquid glass and ash-slag material from burning of combustible shales used as fill and consumable additives. It is shown that keramzit based on liquid glass must be cooled at the rate 60 K/min, because a porous material with high structural quality factor and with high FeO content is formed at this cooling rate.

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Literature
1.
go back to reference A. I. Kudyakov, N. A. Svergunova, and M. Yu. Ivanov, Granular Insulating Material Based on a Modified Liquid Glass Composition [in Russian], Izd. TGASU, Tomsk (2010). A. I. Kudyakov, N. A. Svergunova, and M. Yu. Ivanov, Granular Insulating Material Based on a Modified Liquid Glass Composition [in Russian], Izd. TGASU, Tomsk (2010).
2.
go back to reference E. S. Abdrakhimova and V. Z. Abdrakhimov, “Highly porous thermal insulating material based on liquid glass,” Fiz. Khim. Stekla, 43(2), 222 – 230 (2017). E. S. Abdrakhimova and V. Z. Abdrakhimov, “Highly porous thermal insulating material based on liquid glass,” Fiz. Khim. Stekla, 43(2), 222 – 230 (2017).
3.
go back to reference V. Z. Abdrakhimov, “Study of the phase composition of thermal-insulation materials based on solid salt slags and liquid glass,” Izv. Vysh. Ucheb. Zaved., Stoitel’stvo, No. 11 – 12, 33 – 39 (2008). V. Z. Abdrakhimov, “Study of the phase composition of thermal-insulation materials based on solid salt slags and liquid glass,” Izv. Vysh. Ucheb. Zaved., Stoitel’stvo, No. 11 – 12, 33 – 39 (2008).
4.
go back to reference V. F. Gillebrand and G. A. Lendel, A Practical Guide to Inorganic Analysis [in Russian], Khimiya, Moscow (1965). V. F. Gillebrand and G. A. Lendel, A Practical Guide to Inorganic Analysis [in Russian], Khimiya, Moscow (1965).
5.
go back to reference E. S. Abdrakhimova, V. Z. Abdrakhimov, and A. K. Kairakbaev, The Use of Wastes from the Fuel and Energy Complex in the Production of Thermal-Insulation Materials Based on Liquid Glass Compositions [in Russian], Kazakhsk.-Rus. Mezhdunar. Universitet, Aktobe (2016). E. S. Abdrakhimova, V. Z. Abdrakhimov, and A. K. Kairakbaev, The Use of Wastes from the Fuel and Energy Complex in the Production of Thermal-Insulation Materials Based on Liquid Glass Compositions [in Russian], Kazakhsk.-Rus. Mezhdunar. Universitet, Aktobe (2016).
6.
go back to reference V. Z. Abdrakhimov, “Composition for the production of waterresistant porous filler, RF Pat. 2478084, C2 SB 14B 14/24,” Byull. Izobr. Polezn. Modeli, No. 9 (2013), publ. March 27, 2013. V. Z. Abdrakhimov, “Composition for the production of waterresistant porous filler, RF Pat. 2478084, C2 SB 14B 14/24,” Byull. Izobr. Polezn. Modeli, No. 9 (2013), publ. March 27, 2013.
7.
go back to reference V. Z. Abdrakhimov, V. K. Semenychev, V. A. Kulikov, and E. S. Abdrakhimova, “Method of producing porous aggregate, Pat. 2426710, C1 C04B 38/06, 33/132,” Byull. Izobr. Polezn. Modeli, No. 23 (2011), publ. August 20, 2011. V. Z. Abdrakhimov, V. K. Semenychev, V. A. Kulikov, and E. S. Abdrakhimova, “Method of producing porous aggregate, Pat. 2426710, C1 C04B 38/06, 33/132,” Byull. Izobr. Polezn. Modeli, No. 23 (2011), publ. August 20, 2011.
8.
go back to reference V. F. Pavlov, Physical and Chemical Principles of Firing Building Ceramic Articles [in Russian], Stroiizdat, Moscow (1977). V. F. Pavlov, Physical and Chemical Principles of Firing Building Ceramic Articles [in Russian], Stroiizdat, Moscow (1977).
9.
go back to reference E. S. Abdrakhimova and V. Z. Abdrakhimov, “Structural transformations of iron compounds in clayey materials according to Mössbauer spectroscopy data,” Zh. Fiz. Khim., 80(7), 1 – 8 (2011). E. S. Abdrakhimova and V. Z. Abdrakhimov, “Structural transformations of iron compounds in clayey materials according to Mössbauer spectroscopy data,” Zh. Fiz. Khim., 80(7), 1 – 8 (2011).
10.
go back to reference G. V. Kukolev, Silicon Chemistry and Physical Chemistry of Silicates [in Russian], Vyssh. Shkola, Moscow (1966). G. V. Kukolev, Silicon Chemistry and Physical Chemistry of Silicates [in Russian], Vyssh. Shkola, Moscow (1966).
Metadata
Title
Optimal Cooling Rate of Porous Fill Based on Liquid-Glass Compositions
Author
E. S. Abdrakhimova
Publication date
28-01-2019
Publisher
Springer US
Published in
Glass and Ceramics / Issue 9-10/2019
Print ISSN: 0361-7610
Electronic ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-019-00086-6

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