Features of Producing Geopolymeric Gas Concrete on the Basis of Fly Ash of Novotroitskaya TPS

Number of journal: №1-2-2017
Autors:

Kozhukhova N.I.
Danakin D.N.
Zhernovsky I.V.

DOI: https://doi.org/10.31659/0585-430X-2017-745-1-2-113-117

AbstractAbout AuthorsReferences
Issues of producing energy-efficient, environmentally friendly and affordable building materials with the use of large-tonnage industrial waste do not lose their relevance. Within the frame of this research, one of the weakly demanded industrial waste, fly ash of the Novotroitskaya Thermal Power Station of acidic composition with a low hydraulic activity as a main component when producing cellular composites on the basis of a geopolymeric binder, has been studied. On the basis of experimental-analytical studies, the suitability of the fly ash considered as a reaction-active component as a result of its alkaline activation when producing the geopolymeric binder has been established. Compositions of the geopolymericas con- crete with low indexes of density and heat conductivity have been developed. The reasonability and perspectivity of producing efficient gas concrete composites on the basis of the geo- polymeric binder with the use of fly ash of TPS of acidic composition has been substantiated
N.I. KOZHUKHOVA, Candidate of Sciences (Engineering) (This email address is being protected from spambots. You need JavaScript enabled to view it.),
D.N. DANAKIN, Engineer (This email address is being protected from spambots. You need JavaScript enabled to view it.),
I.V. ZHERNOVSKY, Candidate of Sciences (Geology and Mineralogy) (This email address is being protected from spambots. You need JavaScript enabled to view it.)

Belgorod State Technological University named after V.G. Shukhov (46, Kostyukov Street, Belgorod, 308012, Russian Federation)

1. Klimenko A.V., Zorin V.M. Promyishlennaya tepoloenergetika i tepolotehnika. Spravochnik [Industrial Thermal Power Engineering and Thermotechnics. Guide book]. Moscow: MEI. 2004. 632 p.
2. Kozhukhova N.I., Voitovich E.V., Cherevatova A.V., Zhernovsky I.V., Alekhin D.A. Heat-resistant cellular materials on the basis of composite gypsum-silica binders. Stroitel’nye Materialy [Construction Materials]. 2015. No. 6, pp. 65–69. (In Russian).
3. Zhernovsky I.V., Cherevatova A.V., Voitovich E.V., Kozhukhova N.I., Evtushenko E.I. High-temperaturephase transformations in CaO–SO3–SiO2–H2O system with nanosized component. International Journal of Applied Engineering Research. 2016. Vol. 11. No. 12, pp. 7732–7735.
4. Kozhukhova N.I., Chizhov R.V., Zhernovsky I.V., Loganina V.I., Strokova V.V. Features of structure formation of a geo-polymeric binding system on the basis of perlite with the use of different types of alkali activators. Stroitel’nye Materialy [Construction Materials]. 2016. No. 3, pp. 61–64. (In Russian).
5. Fomina E.V., Voitovich E.V., Fomin A.E., LebedevM.S., Kozhukhova N.I. Radioactivity analysis of Oskolsky electrometallurgical works as component in construction composites. Vestnik Belgorodskogo Gosudarstvennogo tehnologicheskogo Universiteta im. V.G. Shukhova. 2015. No. 6, pp. 130–133. (In Russian).
6. Fomina Е.V., Strokova V.V. Kozhukhova N.I., Fomin А.E. Effect of mechano-activation on size parameter of aluminosilicate rocks. Indian Journal of Science and Technology. 2016. Vol. 9. Iss. 22. DOI: 10.17485/ ijst/2016/v9i22/955458.
7. Pavlenko N.V., Botsman L.N., Hotomchenko O.V., Sivalneva M.N. State of the art in cellular concrete. Anniversary Inrernational Research-to-practice Conference devoted to 60-Universe of BSTU named after V.G. Shoukhov “H-Tech technologies and Innovations” (XXI research readings). 2014, pp. 279–282. (In Russian).
8. Sivalneva M.N., Pavlenko N.V., PastushkovP.P., Strokova V.V., Netsvet D.D., Shapovalov N.A. Steam curing characteristics of cellular concrete on the base of nanostructured binder. Journal of Fundamental and Applied Sciences. 2016. Vol. 8. No. 3S, pp. 1480–1485. DOI: http://dx.doi.org/10.4314/jfas.v8i3s.292.
9. Pavlenko N.V., Strokova V.V., Cherevatova A.V., Netsvet D.D., Miroshnikov E.V. Cellular concretes based on nanostructured perlite binder. Applied Mechanics and Materials. 2014. No. 496–500, pp. 2383–2386. DOI: 10.4028/www.scientific.net/AMM.496-500.2383.
10. Strokova V.V., Cherevatova A.V., Zhernovsky I.V., Voitovich E.V. Peculiarities of phase formation in a composite nanostructured gypsum binder Stroitel’nye Materialy [Construction Materials]. 2012. No. 7, pp. 9–12. (In Russian).
11. Voitovich E.V., Cherevatova A.V., Zhernovsky I.V., Alekhin D.A. Gypsum-silica construction composites with enhanced heat-resistance. Vestnik Belgorodskogo Gosudarstvennogo tehnologicheskogo Universiteta im. V.G. Shukhova. 2014. No. 6, pp. 74–80. (In Russian).
12. Suleymanova L.A., Pogorelova I.A., Kondrashev K.R., Suleymanov K.A., Piriev Y.S. Energy saving gas concrete based on composite binders. Vestnik Belgorodskogo Gosudarstvennogo tehnologicheskogo Universiteta im. V.G. Shukhova. 2016. No. 4, pp. 73–83. (In Russian).
13. Fomina E.V., Strokova V.V., Kudeyarova N.P. Effect of application of preliminarily slacked lime in autoclave cellular concrete. Izvestia vyischyih uchebnih zavedeniy. Stroitelstvo. 2013. No. 5 (653), pp. 29–34. (In Russian).
14. Kozhukhova N.I., Zhernovsky I.V., Fomina E.V., Phase formation in geo-polymer systems on the basis of fly ash of Apatity TPS. Stroitel’nye Materialy [Construction Materials]. 2015. No. 12, pp. 85–88. (In Russian).
15. Voitovich E.V., Kozhukhova N.I. Cherevatova А.V., Zhernovsky I.V. Osadchaya M.S. Features of quality control of free of cement binder of non-hydration Type. Applied Mechanics and Materials. 2015. Vol. 724, pp. 39–43.
16. Kozhukhova N., Zhernovsky I., Sobolev K. The effect of silica polymerization in fly ash on the strength of geopolymers. Journal of the Society for American Music. 2014. 1611 (2).

For citation: Kozhukhova N.I., Danakin D.N., Zhernovsky I.V. Features of producing geopolymeric gas concrete on the basis of fly ash of novotroitskaya tps. Stroitel’nye Materialy [Construction materials]. 2017. No. 1–2, pp. 113–117. DOI: https://doi.org/10.31659/0585-430X-2017-745-1-2-113-117. (In Russian).


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