Zeolite-Containing Terra-Silicea as a Component of Composite Binders

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Abstract:

The work is devoted to the study of the zeolite terra silicea (ZTS) for the subsequent development of composite binders based on its properties. Zeolite-containing rock - Terra silicea has high adsorption properties, due to the crystal-chemical features of the structure of its minerals and the predominance of capillary porosity in the rock. The rock-forming zeolite-containing Terra silicea mineral (clinoptilolite), due to the crystal chemical characteristics of its structure, is expected to act as a “battery” of the mortar part of the hydrating system, ensuring the solution intake in the later stages of hardening and, thereby, creating conditions for monolithic structure during the operational period.

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136-141

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December 2019

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[1] L.Kh. Zagorodnyuk, V.S. Lesovik, D.A. Sumskoy Thermal insulation solutions of the reduced density, Construction Materials and Products. 1 (1) (2018) 40–50. (In Russian).

DOI: 10.34031/2618-7183-2018-1-1-40-50

Google Scholar

[2] M.Yu. Elistratkin, A.V. Minakova, A.N. Jamil, V.V. Kukovitsky, Issa Jamal Issa Eleyan Composite binders for finishing compositions, Construction Materials and Products. 1 (2) (2018) 37–44. (In Russian).

DOI: 10.34031/2618-7183-2018-1-2-37-44

Google Scholar

[3] L.N. Botsman, M.S. Ageeva, A.N. Botsman, S.M. Shapovalov, Modified pavement cement concrete, IOP Conf. Series: Materials Science and Engineering. 327 (2018) 032011.

DOI: 10.1088/1757-899x/327/3/032011

Google Scholar

[4] L.A. Suleymanova, K.A. Kara, Aerated concrete on composite binders for monolithic construction, Belgorod State Technological University named after V.G. Shukhov, 2011, 150. (In Russian).

DOI: 10.31659/0585-430x-2018-762-8-4-8

Google Scholar

[5] M.S. Ageeva, D.M. Sopin, G.A. Lesovik, A.A. Metrohin, N.V. Kalashnikov, V.A. Bоgusevich, The modified composite slag-cement binder, Journal of Engineering and Applied Sciences. 9 (8) (2014) 1381–1385.

Google Scholar

[6] L.N. Solovieva, Y.N. Ogurtsova, A.I. Bondarenko, A.N. Botsman, Characteristics of sand with regard to their use in composite binders and fine concrete, Bulletin of BSTU named after V.G. Shukhov. 2 (2012) 31–33. (In Russian).

Google Scholar

[7] N.I. Alfimova, I.V. Zhernovskiy, E.A. Yakovlev, T.G. Yurakova, G.A. Lesovik. The influence of the genesis of the mineral filler on the properties of composite binders, Bulletin of BSTU named after V.G. Shukhov. 2 (2010) 91–94. (In Russian).

Google Scholar

[8] E.V. Fomina, M.I. Kozhukhova, N.I. Kozhukhova Estimation of application efficiency of aluminosilicate rocks in composite binders, Bulletin of BSTU named after V.G. Shukhov. 5 (2013) 31–35. (In Russian).

Google Scholar

[9] T.A. Hezhev, A.V. Zhurtov, A.S. Tsipinov, S.V. Klyuev Fire resistant fibre reinforced vermiculite concrete with volcanic application, Magazine of Civil Engineering. 4 (2018) 181–194.

Google Scholar

[10] V.S. Lesovik, P.V. Trunov, N.I. Alfimova, Reduction of energy consumption in manufacturing the fine ground cement, Research Journal of Applied Sciences. 9 (11) (2014) 745–748.

Google Scholar

[11] N. Kozhukhova, I. Zhernovsky, K. Sobolev. The effect of silica polymerization in fly ash on the strength of geopolymers, Journal of the Society for American Music. (2014) 1611 (2).

DOI: 10.1557/opl.2014.760

Google Scholar

[12] N.I. Kozhukhova, E.V. Fomina, I.V. Zhernovsky, V.V. Strokova, R.V. Chizhov. The utilization efficiency of natural alumosilicates in composite binders, Applied Mechanics and Materials. 670–671 (2014) 182–186.

DOI: 10.4028/www.scientific.net/amm.670-671.182

Google Scholar

[13] N.I. Kozhukhova, R.V. Chizhov, I.V. Zhernovsky, V.V. Strokova, Structure formation of geopolymer perlite binder vs. type of alkali activating agent, Journal of Engineering and Applied Sciences. 11 (20) (2016) 12275–12281.

Google Scholar

[14] I.V. Zhernovsky, A.V. Cherevatova, N.I. Kozhukhova, M.S. Osadchaya, D.A. Ksenofontov Low-temperature aluminosilicate nanostructured binder, Characteristics and applicability, Materials Science Forum. 945 (2019) 193–198.

DOI: 10.4028/www.scientific.net/msf.945.193

Google Scholar

[15] N.I. Kozhukhova, V.V. Strokova, M.I. Kozhukhova, I.V. Zhernovsky structure formation in alkali activated aluminosilicate binding systems using natural raw materials with different crystallinity degree, Construction Materials and Products. 1 (4) (2018) 38–43. (In Russian).

DOI: 10.34031/2618-7183-2018-1-4-38-43

Google Scholar