Preview

Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture

Advanced search

Fired Construction Materials Based on Alumino-Silicate Wastes of Oil-Extracting Industry

Abstract

The paper presents research results on the utilization of alumo-silicate wastes of oil-extracting industry for the production of ceramic products. Mechanical-and-physical properties of obtained specimens are detected. Specimens fabricated form the mixture of clay and alumo-silicate wastes possess 14-16 MPa compressive strength and can be used as construction materials. Investigations of the phase composition show that anorthite and mullite compositions are formed in the obtained specimens which improve the mechanical-and-physical properties of ceramic products.

About the Authors

Nelli K. Skripnikova
Tomsk State University of Architecture and Building
Russian Federation


Viktoria A. Litvinova
Tomsk State University of Architecture and Building
Russian Federation


Gennadiy G. Volokitin
Tomsk State University of Architecture and Building
Russian Federation


Aleksandr V. Lutsenko
Tomsk State University of Architecture and Building
Russian Federation


Oleg G. Volokitin
Tomsk State University of Architecture and Building
Russian Federation


Mark A. Semenovykh
Tomsk State University of Architecture and Building
Russian Federation


References

1. Skripnikova N.K., Yur'ev I.Y., LitvinovaV.A., Kosmachev P.V., Semenovykh M.A. Ispol'zovanie zoloshlakovykh otxodov dlya polucheniya razlichnykh vidov stroitel'nykh materialov [Bottom ash waste in construction materials production]. Stroitel'nye materialy [Construction Materials]. 2015. No. 1. Pp. 1–4. (rus)

2. Skripnikova N.K., Yur'ev I.Y., Lutsenko A.V., LitvinovaV.A. Protsessy formirovaniya struktury ceramicheskogo kirpicha na osnove alumosilikatnykh otxodov [The structural formation of ceramic brick based on alumo-silicate waste]. Proc. Int. Sci. Conf. of Young Scientists ‘Advanced Materials in Construction and Engineering’. 2015. Pp. 506–508. (rus)

3. Skripnikova N.K., LitvinovaV.A, Lutsenko A.V., Semenovykh M.A. Obzhigovye stenovye materialy s ispol'zovaniem alyumosilikatnykh otkhodov [Fired wall materials based on alumosilicate waste]. Coll. Papers STROISIB-2017 Int. Sci. Tech. Conf. 'Effective Procedures and Technologies in Construction Materials Science'. 2017. Pp. 249–253. (rus)

4. Groshev I.A., Ismailov A.I. Razrabotka sostavov mass dlya polucheniya fasadnoi ceramiki is syr'evykh materialov Kazakhstana [The development of mass compositions for facade ceramics made of raw materials of Kazakhstan]. Glass and Ceramics. 2015. No. 6. Pp. 212–215. (rus)

5. Kotlyar V.D., Lapunova K.A. Tekhnologicheskie osobennosti opok, kak syr'ya dlya stenovoi ceramici [Technological properties of puzzolana as raw material for ceramic wall production]. Izvestiya vuzov. Stroitel'stvo [News of Higher Educational Institutions. Construction]. 2009. No. 12. Pp. 25–31. (rus)

6. Ni L.P., Xalypina O.B. Physico-khimichskie svoistva syr'ey i productov glinozemnogo proizvodstva [Physicochemical properties of raw materials and products of alumina production]. Alma-Ata: Nauka Publ., 2008. 247 p. (rus)

7. Pavlov V.F. Physico-khimichskie osnovy obgiga izdelii stroitel'noi ceramici [Physicochemical bases of firing building ceramics products]. Moscow: Stroyizdat Publ., 1977. 240 p. (rus)

8. Avgustinnik A.I. Ceramica [Ceramics]. Leningrad: Stroyizdat Publ., 1975. 592 p. (rus)

9. Vakalova T.V., Pogrebenkov V.M., Vereshchagin V.I., Revva I.B. Ypravlenie kachestvom stroitel'noi teploizolyatsionnoi ceramici putim proectirovaniya sostava mass [Quality management of construction insulating ceramics by designing mass composition]. Stroitel'nye materialy [Construction Materials]. 2009. Pp. 31–34. (rus)

10. Volland S., Brötz J. Lightweight aggregates produced from sand sludge and zeolitic rocks. Construction and Building Materials. 2015. No. 85. P. 25.

11. Bender W. Vom Ziegelgott zum Industrieelektroniker. Boon. 2004. P.436.

12. Vakalova T.V., Pogrebenkov V.M. Rastional'noe ispol'zovanie prirodnogo i texnogennogo syr'ja v ceramicheskix texnologiyax[ [Rational use of natural and anthropogenic raw materials in ceramic technology]. Stroitel'nye materialy [Construction Materials]. 2009. Pp. 35–38. (rus)

13. Shil'tsina A.D., Vereshchagin V.I., Selivanov Y.V., Korol'kova N.N. Vybor komponentov keramicheskikh mass s uchetom fazovo-mineral'nogo sostava i termofizicheskikh kharakteristik [Selection of ceramic mix components with regard to phase and mineral composition and thermophysical characteristics]. Stroitel'nye materialy [Construction Materials]. 2009. Pp. 230–233. (rus)

14. Mystaphin N.R., Ashmarin G.D. Klinkernaya keramika na osnove kremnezemistogo syr'ya i tekhnogennykh otkhodov [Clinker ceramics based on siliceous raw materials and industrial waste]. Stroitel'nye materialy [Construction Materials]. 2009. Pp. 254–255. (rus)

15. Vereshchagin V.I., Shil'tsina A.D., Selivanov Y.V. Modelirovanie struktury i otsenka prochnosti stroitel'noi keramiki iz grubozernistykh mass [Structure modeling and strength evaluation of coarse-grained building ceramics]. Stroitel'nye materialy [Construction Materials]. 2009. Pp. 236–239. (rus)


Review

For citations:


Skripnikova N.K., Litvinova V.A., Volokitin G.G., Lutsenko A.V., Volokitin O.G., Semenovykh M.A. Fired Construction Materials Based on Alumino-Silicate Wastes of Oil-Extracting Industry. Vestnik of Tomsk state university of architecture and building. 2017;(2):141-147. (In Russ.)

Views: 1166


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1607-1859 (Print)
ISSN 2310-0044 (Online)