1. Gluhovskiy V.D. Gruntosilikaty, ih svoystva ,tehnologiya izgotovleniya i oblast' primeneniya. Avtoref.dis…d-ra teh.nauk.. Kiev,1965
2. Fernandez-Jimenez, A; Palomo, A; Pastor, JY, A. Martin (2008), “New Cementitious Materials Based on Alkali-Activated Fly Ash: Performance at High Temperatures”, Journal Of The American Ceramic Society, 91, (10), 3308-3314.
3. Rahimova N.R. Gazobetony na osnove kompozicionnyh shlakoschelochnyh vyazhuschih / N.R. Rahimova, R.Z. Rahimov, G.A. Fatyhov, D.P. Kuznecov // Stroitel'nye materialy, oborudovanie, tehnologii XXI veka. Tehnologii betonov. 2009. - №7-8 (36-37). - S.34-35
4. Raksha V.A.Issledovanie vliyaniya himicheskogo sostava shlakov na svoystva shlakoschelochnyh vyazhuschih betonov. Avtoref.dis. … kaknd.teh.nauk. Kiev ,1975
5. Fernandez-Jiménez A., Garcia-Lodeiro I., and Palomo A., (2007), “Durability of alkali- activated fly ash cementitious materials”, J. Materials Science, 42, 3055-3065.
6. Rahimov, R.Z. Betony na osnove kompozicionnyh shlakoschelochnyh vyazhuschih / N.R. Habibullina, R.Z. Rahimov, M.M. Rahimov, A.A. Sokolov, R.F. Gataullin // Stroitel'nye materialy. 2005. - №8. - S. 16-17.
7. Rakhimova, N.R. Compositional slag-alkaline bindings / N.R. Rakhimova, R.Z. Rakhimov // 16. Internationale Baustofftagung, Tagungsbericht, Band 1, Weimar. 2006. - P. 1171-1176.
8. Habibullina, N.R. Povyshenie effektivnosti shlakoschelochnyh vyazhuschih i betonov / N.R. Habibullina, R.Z. Rahimov // Beton i zhelezobeton. -2006. -№5. -S. 15-17.
9. Toturbiev B.D. Stroitel'nye materialy na osnove silikatnatrievyh kompoziciy. - Stroyizdat. 1988. - 208.
10. Ivaschenko, Yu.G. Povyshenie vodostoykosti teploizolyacionnyh materialov na osnove zhidkogo stekla / Yu.G. Ivaschenko, I.B. Drevko // Sovremennye problemy stroitel'nogo materialovedeniya. Sed'mye akademicheskie chteniya RAASN (Belgorod) 2001. - S. 150-152.
11. Solomatov, V.I. Razvitie polistrukturnoy teorii kompozicionnyh stroitel'nyh materialov. / Solomatov, V.I. // IVUZ: Stroitel'stvo. - Novosibirsk, 1985. - №8. - S 58-64.
12. Puertas, F. Pore solution in alkali-activated slag cement pastes. Relation to the composition and structure of calcium silicate hydrate / F.Puertas, A.Fernandez-Jimenez, M.T. Blanco-Varela // Cement and Concrete Research 34. -2004. -P.139-148.
13. Criado, A. Palomo, A. Fernadez-Jiménez (2005) “Alkali activation of fly ashes. Part 1: Effect of curing conditions on the carbonation of the reaction products”, Fuel, 84, 2048-2054.
14. Palomo A., Fernandez-Jiménez A., Kovalchuk G. (2005b),“Some key factors affecting the alkali activation of fly ash”, 2nd Inter. Symposium NON-TRADITIONAL CEMENT & CONCRETE, Brno, Czech Republic.
15. Criado M., Fernandez-Jiménez A., Palomo A., (2007a) “Alkali Activation of fly ash. Effect of the SiO O ratio. Part I: FTIR study”, Microp. Mesop. Mat., 106, 180-191.
16. van Jaarsveld J.G.S. and van Deventer J.S.J. (1999), “Effect of the alkali metal activator on the properties of fly ash-based geopolymers” Ind. Eng. Chem. Res. 38, 3932-3941.
17. Fernandez-Jiménez A., Palomo A., Lfipez-Hombrados C., (2006c), “Some engineering properties of alkali activated fly ash concrete”, ACI Materials Journal 103 (2), 106-112
18. Palomo A., Fernandez-Jiménez A., Lopez-Hombrados C., Lleyda I.L, (2004b) “Precast elements made of alkali-activated fly ash concrete”, International Conference on fly ash, silica fume, slag and natural pozzolans in concrete. Ed. V.M. Malhotra,
19. Sofi M., van Deventer J.S.J., Mendis P.A., Lukey G.C, (2007) “Engineering properties of inorganic polymer concretes (IPCs)”, Cem. Concr. Res. 37, 251-257
20. Dehwah, H.A.F. Mechanical properties of sell-compacting concrete incorporating quarry dust powder, silica fume or fly ash. Constr. Build. Meter. 2012, 26, 547-551.
21. Katz, A.; Bauni, H. Effect of high levels of fines content on concrete properties. ACI Mater. . 2006, ION, 474-482.
22. Shlakoschelochnoy yacheistyy beton: pat. 2 777 325 Ros. Federaciya: MPK C04B 28/26, C04B 38/02 Avakyan A. G., Procenko K. D. - №2021123607; za-yavl. 05.08.2021; opubl. 02.08.2022 Byul. № 22