Open Access
Issue
E3S Web Conf.
Volume 392, 2023
II International Conference on Agriculture, Earth Remote Sensing and Environment (RSE-II-2023)
Article Number 02042
Number of page(s) 7
Section Ecology, Environmental Protection and Conservation of Biological Diversity
DOI https://doi.org/10.1051/e3sconf/202339202042
Published online 06 June 2023
  1. M.V. Glikshtern, Flame retardants, Polymer Materials, 3-4, 15–23 (2003) [Google Scholar]
  2. V.V. Kopylov, Polymeric materials with reduced flammability (Chemistry, Moscow, 1986) [Google Scholar]
  3. P.V. Kuleznev, V.M. Balakin, Investigation of the effect of phosphorus-containing flame retardants on the combustibility and dielectric properties of epoxy compounds, Plastic masses, 9, 8–9 (2012) [Google Scholar]
  4. I.V. Musov, A.S. Vindizheva, Kh.Kh. Sapaev, S.Yu. Khashirova, A.K. Mikitaev, Proceedings of the VIII International Scientific and Practical Conference “New Polymer Composite Materials”, Nalchik, 171–173 (2012) [Google Scholar]
  5. R.M. Aseeva, G.E. Zaikov, Combustion of polymeric materials (Nauka, Moscow, 1981) [Google Scholar]
  6. M.L. Kerber, A.M. Bukanov, S.I. Wolfson, I.Yu. Gorbunova, L.B. Kandyrin, A.G. Sirota, M.A. Sheryshev, Physical and chemical processes during processing polymers (Nauchnye osnovy i tekhnologii, St. Petersburg, 2013). [Google Scholar]
  7. A.S. Vindizheva, S.Yu. Khashirova, Kh.Kh. Sapaev, I.V. Musov, A.K. Mikitaev, Polyvinylchloride compound with increased fire resistance, Science-intensive technologies, 1, 27–30 (2012) [Google Scholar]
  8. G.V. Plotnikova, A.N. Egorov, Available organophosphorus compounds as flame retardants, Fire and explosion safety, 6, 26–29 (2003) [Google Scholar]
  9. A.N. Baratov, R.A. Andrianov, A.Ya. Korolchenko, D.S. Mikhailov, V.A. Ushkov, L.G. Filin, Fire hazard of building materials (Stroyizdat, Moscow, 1988) [Google Scholar]
  10. P.Zh. Tozhiev, Kh.Kh. Turaev, A.T. Jalilov, F.N. Nurkulov, Structure and properties of polyethylene filled with dispersed fillers, Uzbek chemical journal, 4, 547–551 (2018) [Google Scholar]
  11. D.R. Kenzhaev, A.T. Jalilov, Kh.Kh. Turaev, Influence of fillers on the thermal properties of polymers, International scientific conference “Innovative solutions to engineering and technological problems of modern production”, Bukhara, 14-16 November 2019, 414–416 (2019) [Google Scholar]
  12. V.V. Dolgov, N.R. Ashurov, Sh.G. Sadykov, M.M. Usmanova, G.A. Yahebekova, Polymer nanocomposites with enhanced fire-resistant characteristics, Modern problems of science about polymers: Proceedings. report intl. conf., November 14, 2016, Tashkent, 99–101 (2016) [Google Scholar]
  13. E.M. Beknazarov, S.Sh. Lutfullaev, F.M. Saidalov, “Investigation of their technological properties during processing of secondary polymers”, Innovative technologies, Journal, Against, 3, 43, 38–42 (2021) [Google Scholar]
  14. E.M. Beknazarov, S.Sh. Lutfullaev, Z.Yu. Joraev, “A modern approach to the trends in the production of composite materials based on immiscible secondary polymers”, Scientific newsletter of Namangan State University, Magazine, year, 6, 85–88 (2021) [Google Scholar]
  15. E.M. Beknazarov, S.Sh. Lutfullaev, F.M. Saidalov, Z.Yu. Jo'raev, “On structural-chemical and physical-mechanical properties of secondary polymer waste”, Development of science and technology, Bukhara-2021, 4, 88–93 (2021) [Google Scholar]
  16. F.F. Nazarov, D.R. Khamidov, F.S. Nazarov, S.J. Samadov, N.I. Fayzullaev, Carbonate Conversion of Methane in Membranal Catalyses, Turkish Online Journal of Qualitative Inquiry (TOJQI), 12, 3, 384–402 (2021) [Google Scholar]

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