Characterization of Jurassic mudstones of the Northwest Caucasus as a raw material for clinker tile production

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

The article characterizes Jurassic mudstones of the North-West Caucasus as a potential raw material for the production of clinker tiles with water absorption of less than 3%. It is noted that traditional for the south of Russia raw materials for the production of ceramic bricks and tiles in the last centuries were various types of loams, which are widely distributed almost throughout the territory. However, for a number of reasons, they cannot be considered as raw materials for the production of clinker tiles, for which there has been a steady demand in recent years, especially on the Black Sea coast. Geographically, the Jurassic sediments in the Krasnodar region are traced in a wide strip (50–100 km) at a distance of 20 to 60 km from the coast. These are the oldest rocks in the region. The thickness of numerous mudstones varies from a few to many tens of meters. The chemical composition of mudstones is characterized by the content of aluminum oxide from 17 to 22 %, increased content of potassium oxide and iron oxides. The mineral composition is represented by hydrous mica, kaolinite and chlorite with admixture of quartz and feldspars. Pre-firing properties of argillites can be regulated by the degree of grinding. In terms of sinterability, argillites are qualified as a strong-medium sintering raw material of low-temperature sintering with high strength of ceramic stone. The results and analysis of the obtained data allow us to assert that the Jurassic mudstones of the North-West Caucasus are potentially suitable raw materials for production of clinker tiles with a wide range of physical and technical properties using a simplified technology.

Full Text

Restricted Access

About the authors

M. E. Orlova

Don State Technical University

Email: marina.nekrasova.96@list.ru

Assistant

Russian Federation, 1, Gagarina Square, Rostov-on-Don, 344003

K. A. Lapunova

Don State Technical University

Author for correspondence.
Email: keramik_kira@mail.ru
Russian Federation, 1, Gagarina Square, Rostov-on-Don, 344003

References

  1. Talpa B.V. Jenciklopedija starinnyh kirpichej i cherepicy iz so-branija muzeja «Kirpichnaja biblioteka» [Encyclopedia of antique bricks and tiles from the Brick Library Museum collection]. Rostov-on-Don: JuFU. 2021. 432 pp.
  2. Sergeeva E.M., Larionova A.K., Komissarovoj N.N. Ljossovye porody SSSR: v dvuh tomah. Tom 1. Inzhenerno-geologicheskie osobennosti i problemy racional’nogo ispol’zovanija [Loess rocks of the USSR: in two volumes. Vol. 1. Engineering and geological features and problems of rational use]. Moscow: Nedra, 1986. 232 pp.
  3. Logvinenko N.V. Petrografija osadochnyh porod [Petrography of sedimentary rocks]. Moscow: Vyschaya schcola, 1984. 450 p.
  4. Kalinin P. I. Trifonov V. A., Shishlina N. I. Jevoljucija cherno-zjomov Severo-zapadnogo Kavkaza pod vlijaniem klimaticheskih iz-menenij v pozdnem golocene. Materialy nauchnoj konferencii, po-svjashhennoj 80-letiju kafedry pochvovedenija i upravlenija zemel’ny-mi resursami v 100-letnej istorii Voronezhskogo gosudarstvenno-go universiteta «Chernozemy Central’noj Rossii: genezis, jevolju-cija i problemy racional’nogo ispol’zovanija». Voronezh. IPC «Nauchnaja kniga» 2017, pp. 77–81. (In Russian).
  5. Val’kov V.F. Pochvy Juga Rossii [Soils of southern Russia]. Rostov-na-Donu: Jeverest, 2008. 276 p.
  6. Carter C.B., Norton M.G. Ceramic Materials: Science and Engineering. 2nd Edition. Springer, 2013. 775 pp.
  7. Oficial’nyj sajt Federal’nogo agentstva po nedropol’zovaniju. https://rosnedra.gov.ru/data/Fast/Files/202011/4bef8dc423ece4bd04e9e576baff3fce.pdf (data obrashhenija 19.12.2023)
  8. Boiko N.I., Sedletskii V.I., Talpa B.V. Prognozirovanie nemetallicheskikh poleznykh iskopaemykh na Severnom Kavkaze [Prediction of non-metallic minerals in the North Caucasus]. Rostov-on-Don: Rostov State University, 1986. 255 p.
  9. Metodicheskie rekomendacii po primeneniju Klassifikacii zapasov mestorozhdenij i prognoznyh resursov tverdyh poleznyh iskopaemyh. Glinistye porody. Moscow: MPR, 2007. 37 pp.
  10. Avgustinik A.I. Keramika [Ceramics]. Moscow: Strojizdat, 1975. 592 p.
  11. Kondratenko V.A. Keramicheskie stenovye materialy: optimizacija ih fiziko-tehnicheskih svojstv i tehnologicheskih parametrov pro-izvodstva [Ceramic wall materials: optimization of their physical and technical properties and technological parameters of production]. Moscow: Kompozit, 2005. 509 pp.
  12. Frolov V.T. Litologija [Lithology]. Book 2. Moscow: MGU, 1993. 432 p.
  13. Kotlyar A.V. Characteristics of stone-like clay rocks as raw materials for the production of building ceramics. Stroitel’nye Materialy [Construction Materials]. 2022. No. 4, pp. 31–37. (In Russian). https:// doi.org/10.31659/0585-430X-2022-801-4-31-37
  14. Kuznecov V.G. Litologija. Osadochnye porody i ih izuchenie [Lithology. Sedimentary rocks and their study]. Moscow: Nedra, 2007. 511 pp.
  15. Kotljar A.V. Klinkernyj kirpich nizkotemperaturnogo spekanija na osnove argillitopodobnyh glin i argillitov. Cand. Diss. (Engineering). Volgograd. 2018. 199 p. (In Russian).
  16. Jashhenko R.A., Terehina Ju.V., Kotljar A.V. Tehnologija poluchenija dorozhnogo klinkernogo kirpicha na osnove argillitov s ispol’zovaniem plavnej. Materialy nacional’noj nauchno-prakticheskoj konferencii. Aktual’nye problemy nauki i tehniki. 2019, pp. 760–762. (In Russian).
  17. L-37 (Rostov-na-Donu). Gosudarstvennaja geologicheskaja karta Rossijskoj Federacii. Tret’e pokolenie. Geologicheskaja karta doneogenovyh obrazovanij. Skifskaja serija. Karta sostavlena: Severo-Kavkazskoe PGO, FGBU «VSEGEI», 2021. https://www.geokniga.org/maps/33296 (data obrashhenija 10.01.2024). (In Russian).
  18. K-37 (Sochi). Gosudarstvennaja geologicheskaja karta Rossijskoj Federacii. Tret’e izdanie. Skifskaja serija. GNC FGUGP Juzhmor-geologija, FGUGP Kavkazgeolsemka, 2009. https://www.geokniga.org/maps/7028 (data obrashhenija 10.01.2024). (In Russian).
  19. Teodorovich G.I., Pohvisneva E.A. Litologija i diagenez jurskih otlozhenij Severo-Zapadnogo Kavkaza [Lithology and diagenesis of Jurassic sediments of the Northwest Caucasus]. USSR Academy of Sciences. Institute of Geology and Development of Combustible Fossils. Moscow: Nauka, 1964. 104 p.
  20. Hmelevcov A.A. Inzhenerno-geologicheskie svojstva argillitopodobnyh glin sochinskoj svity i ih vlijanie na uslovija stroitel’stva v gorode Sochi: diss. … kand. geol.-min. nauk. Rostov-na-Donu, 2014. 157 pp. (In Russian).
  21. Kotljar A.V., Cherevkova Ja.V., Mirina V.A., Zamanskij A.M. Argillitopodobnye gliny – perspektivnoe syr’jo dlja proizvod-stva keramicheskoj cherepicy. Materialy mezhdunarodnoj nauchno-prakticheskoj konferencii «Stroitel’stvo-2015. Sovremennye problemy stroitel’stva». Rostov-na-Donu. RGSU. 2015. pp. 415–418. (In Russian).

Supplementary files

Supplementary Files
Action
1. JATS XML
2. Fig. 1. Tiles produced at Konokovskiy tile factory of Uspenskiy district, Krasnodar region (a) and tiles produced in Krasnodar (b)

Download (116KB)
3. Fig. 2. Tile exposed to biogenic impact (Riviera Park, Sochi)

Download (73KB)
4. Fig. 3. Fragment of the geologic map of the Black Sea coast of Krasnodar Krai. Blue color indicates sediments Jurassic

Download (288KB)
5. Fig. 4. Outcrops of argillites near the road Khadyzhensk–Tuapse

Download (277KB)
6. Fig. 5. Radiograph of typical argillite of the North-Western Caucasus

Download (95KB)
7. Fig. 6. Thermogram of typical argillite of the North-West Caucasus Caucasus

Download (104KB)
8. Fig. 7. Dependence of air shrinkage of crushed mudstones on grain composition

Download (77KB)

Copyright (c) 2024 ООО РИФ "СТРОЙМАТЕРИАЛЫ"

This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies