1. Degel' R., Freling K., Hansman T. [i dr.]. Koncepciya bezothodnogo metallurgicheskogo proizvodstva //Chernye metally. – 2016. № 4. – S. 40-49. EDN: https://elibrary.ru/WDKUEP
2. Novye puti ispol'zovaniya othodov metallurgicheskoy i energeticheskoy promyshlennosti v tehnologii vyazhuschih / M.A. Suhanov, S.N. Efimov, N.N. Dolgopolov [i dr.] // Stroitel'nye materialy. – 1991. – № 7. – S. 22–23.
3. Oficial'nyy sayt Rosstat https://rosstat.gov.ru/
4. Liew K.M., Sojobi A.O., Zhang L.W. Green concrete: Prospects and challenges. Construction and Building Materials. - 2017. Vol. 156. - Pp. 1063-1095. DOI: https://doi.org/10.1016/j.conbuildmat.2017.09.008; EDN: https://elibrary.ru/YHBMFK
5. Tamanna K., Raman S., Jamil M., Hamid R. Utilization of wood waste ash in construction technology: A review. Construction and Building Materials. – 2020. Vol. 237. 117654.
6. Zulkernain N.H., Gani P., Chuck Chuan N., Uvarajan T. Utilisation of plastic waste as aggregate in construction materials: A review. Construction and Building Materials. – 2021. Vol. 296. 123669.
7. Poudyal L., Adhikari K. Environmental sustainability in cement industry: An integrated approach for green and economical cement production. Resources, Environment and Sustainability. – 2021. Vol. 4. 100024.
8. Tsakiridis P.E., Papadimitriou G.D., Tsivilis S., Koroneos C. Utilization of steel slag for Portland cement clinker production. Journal of Hazardous Materials. – 2008. Vol. 152. - Pp. 805-811. DOI: https://doi.org/10.1016/j.jhazmat.2007.07.093; EDN: https://elibrary.ru/KJXXVX
9. Perfilov V. A. Utilizaciya promyshlennyh othodov dlya povysheniya ekologicheskoy bezopasnosti okruzhayuschey sredy // Yug Rossii: ekologiya, razvitie. – 2016. – T. 11, № 2. – S. 205-212. EDN: https://elibrary.ru/WELZST
10. Tomashevskiy V. A. Perspektivy ispol'zovaniya othodov PAO «Severstal'» v cementnoy promyshlennosti // Iniciativy molodyh - nauke i proizvodstvu: Sbornik statey IV Vserossiyskoy nauchno-prakticheskoy konferencii molodyh uchenyh i studentov, 30 noyabrya 2022 goda. – Penza, 2022. – S. 515-516. EDN: https://elibrary.ru/CPGSHZ
11. Klassen V. K., Dolgova E. P., Morozova I. A., Dolgov V. M. Proizvodstvo cementa na osnove tehnogennyh materialov Belgorodskoy oblasti // Naukoemkie tehnologii i innovacii, 09–10 oktyabrya 2014 g. – Belgorod, 2014. – S. 112-117. EDN: https://elibrary.ru/TCLKMZ
12. Krutilin A. A., Krapchetova T. V., In'kova N. A., Pahomova O. K. Ispol'zovanie ferritno-kal'cievogo shlaka v kachestve zhelezosoderzhaschego komponenta pri proizvodstve portlandcementnogo klinkera // Vestnik Tomskogo gosudarstvennogo arhitekturno-stroitel'nogo universiteta. – 2021. – T. 23, № 5. – S. 118-126. – DOIhttps://doi.org/10.31675/1607-1859-2021-23-5-118-126. EDN: https://elibrary.ru/IIVXLL
13. Borisov I. N., Manuylov V. E. Energo- i resursosberezhenie v proizvodstve cementa pri kompleksnom ispol'zovanii tehnogennyh materialov // ALITinform: Cement. Beton. Suhie smesi. – 2009. – № 6(12). – S. 50-58. EDN: https://elibrary.ru/OONMKL
14. Krivoborodov Yu.R. Special'nye cementy: raznovidnosti, svoystva i primenenie // Tehnika i tehnologiya silikatov. 2023. T. 30. № 1. S. 84 – 91 EDN: https://elibrary.ru/BANTUI
15. Samchenko S.V. Sul'fatirovannye alyumoferrity kal'ciya i cementy na ih osnove./ Samchenko S. V.; Federal'noe agentstvo po obrazovaniyu, RHTU im. D. I. Mendeleeva, Izdatel'skiy centr M. 2004. 120 s. EDN: https://elibrary.ru/QNDUNJ
16. Kuznecova T.V., Krivoborodov Yu.R., Samchenko S.V. Himiya, sostav i svoystva special'nyh cementov /V sbornike: Himiya i himicheskaya tehnologiya na rubezhe tysyacheletiy. materialy nauchno-prakticheskoy konferencii. Tomskiy politehnicheskiy universitet (TPU). 2000. S. 96-98. EDN: https://elibrary.ru/TOEXOZ
17. Samchenko S.V., Zorin D.A. Vliyanie dispersnosti rasshiryayuschegosya komponenta na svoystva cementov // Tehnika i tehnologiya silikatov. 2006. T. 13. № 2. S. 2-7. EDN: https://elibrary.ru/KWMZHD
18. Samchenko S.V., Korshunov A.V., Zorin D.A., Tobolev P.D. Fiziko-mehanicheskie i deformacionnye harakteristiki polimineral'nyh vyazhuschih kompoziciy na osnove sul'foalyumoferritov kal'ciya // Tehnika i tehnologiya silikatov. – 2023. – T.30, № 3. – S. 230-240. https://tsilicates.ru/2023_tts3 EDN: https://elibrary.ru/UEVZTJ
19. Isteri V., Ohenoja K., Hanein T., Kinoshita H., Kletti H., Rößler C., Tanskanen P., Illikainen M., Fabritius T. Ferritic calcium sulfoaluminate belite cement from metallurgical industry residues and phosphogypsum: Clinker production, scale-up, and microstructural characterization. Cement and Concrete Research. – 2022. Vol. 154. 106715.
20. Kuznecova, T.V. Special'nye cementy na osnove othodov promyshlennosti [Tekst] // Cement. - 1984. №4. – S. 6-8.
21. Grebenyuk A. A., Borisov I. N. Zhelezosoderzhaschie tehnogennye othody dlya polucheniya rasshiryayuschihsya kompoziciy // Naukoemkie tehnologii i innovacii: sbornik dokladov mezhdunarodnoy nauchno-prakticheskoy konferencii, 06–07 oktyabrya 2016 goda. – Belgorod, 2016. - S. 91-97. EDN: https://elibrary.ru/YIDGSP
22. Ivashina M. A. Ispol'zovanie tehnogennyh materialov v proizvodstve sul'foalyuminatnogo klinkera // Himiya i himicheskaya tehnologiya v XXI veke : Materialy XIX Mezhdunarodnoy nauchno-prakticheskoy konferencii imeni professora L.P. Kuleva studentov i molodyh uchenyh, 21–24 maya 2018 goda. – Tomsk, 2018. – S. 73-74. EDN: https://elibrary.ru/XVVYHZ
23. Serpichev A.S., Sycheva L.I. Ispol'zovanie tehnogennyh othodov pri poluchenii belitsul'foalyuminatnogo cementa // Uspehi v himii i himicheskoy tehnologii. – 2022. – T. 36, № 3(252). – S. 130-133. EDN: https://elibrary.ru/HAFENX
24. Grebenyuk A.A., Borisov I.N., Davidyuk A.S. Nikitina M.A. Formirovanie tverdofazovyh rastvorov pri sinteze vysokoosnovnogo ferritnogo klinkera // Tehnika i tehnologiya silikatov. 2022. T. 29. №3. S. 217 – 230. EDN: https://elibrary.ru/YSXIOX
25. Hewlett P., Liska M. Lea's Chemistry of Cement and Concrete. Butterworth-Heinemann, Oxford, 2019.
26. Kuznecova T. V., Talaber Y. Glinozemistyy cement. – Moskva: Stroyizdat. - 1988. s. 272. EDN: https://elibrary.ru/YQMMAP
27. Krivoborodov Y. R., Kuznetsova T. V., Samchenko S. V. Structural Changes in Refractory Calcium Aluminate Cement Concrete. Refractories and Industrial Ceramics. – 2018. № 59, Pp. 151-155. DOI: https://doi.org/10.1007/s11148-018-0197-1; EDN: https://elibrary.ru/BREKVE



