Труды КНЦ вып. 5(ХИМИЯ И МАТЕРИАЛОВЕДЕНИЕ) вып. 2/2021(12)

References 1. Michel A. Aegerter Aerogels Handbook. Springer Science+Business Media. LLC. 2011. 2. Baetens R, Jelle B. P., Gustavsen A. Aerogel insulation for building applications: a state-of-the-art review. Energy Build, 2011, W . 43, рр. 761-769. 3. Hanus M. J., Harris A.T. Nanotechnology innovations for the construction industry. Prog. Mater. Sci., 2013, W . 58, рр. 1056-1102. 4. Riffat S. B., Qiu G. A review o f state-of-the-art aerogel applications in buildings. Int J Low-Carbon Technol., 2013, Vоl. 8, Issue 1, рр. 1-6. 5. Schultz J. M., Jensen K. I., Kristiansen F. H. Super insulating aerogel glazing. Solar Energy Materials & Solar Cells, 2005, W . 89, рр. 275-285. 6. Fickler S., Milow B., Ratke L., Schnellenbach-Held M., Welsch T. Development o f High Performance Aerogel Concrete. Energy Procedia: 6th International Building Physics Conference (IBPC 2015), 2015, W . 78, рр. 406-411. 7. Sanz-Pont D., Sanz-Arauz D., Bedoya-Frutos C., Flatt R. J., Lopez-Andres S. Anhydrite/aerogel composites for thermal insulation. Materials and Structures, 2016, Vоl. 49, рр. 3647-3661. 8. Timin A., Rumyantsev E., Lanin S. N., Rychkova S. A., Guseynov S.S., Solomonov A. V., Antina E. V. Preparation and surface properties o f mesoporous silica particles modified with poly(N-vinyl-2- pyrrolidone) as a potential adsorbent for bilirubin removal. Materials Chemistry and Physics, 2014, No. 147, рр. 673-683. 9. Fang X., Liu Z., Hsieh M. F., Chen M., Liu P., Chen C. Hollow mesoporous aluminosilica spheres with perpendicular pore channels as catalytic nanoreactors. ACS Nano, 2012, No. 6, рр. 4434-4444. 10. Lermontov S. A., Sipyagina N. A., Malkova A. N., Baranchikov A. E., Ivanov V. K. Vliyanie uslovij sinteza na svojstva aerogelej na osnove metiltrimetoksisilana [Influence o f synthesis conditions on the properties o f aerogels based on methyltrimethoxysilane]. Zhurnal neorganicheskoj himii [Journal o f Inorganic Chemistry], 2014, Vоl. 59, No. 12, рр. 1641-1644. (In Russ.). 11. Koval'ko N. Yu., Kalinina M. V., Malkova A. N., Lermontov S. A. Sintez i sravnitel'noe issledovanie kserogelej, aerogelej i poroshkov na osnove sistemy ZrO2-Y2O3-CeO2 [Synthesis and comparative study o f xerogels, aerogels and powders based on the ZrO2-Y2O3-CeO2 system]. Fizika i himiya stekla [Physics and Chemistry o f Glass], 2017, ^ l . 43, No. 4. (In Russ.). 12. Parale V. G., Jung H. N. R., Han W., Lee K. Y., Mahadik D. B., Cho H. H., Park H. H. Improvement in the high temperature thermal insulation performance o f Y 2 O 3 opacified silica aerogels. Journal o f Alloys and Compounds, 2017, Vоl. 727, рр. 871-878. 13. Velyaev Yu. O., Zaharov V. I., Majorov D. V. Sovershenstvovanie tekhnologii polucheniya alyumokremnievogo koagulyanta-flokulyanta na osnove nefelina [Improvement o f the technology for obtaining aluminum-silicon coagulant-flocculant based on nepheline]. Fizika i himiya stekla [Physics and Chemistry o f Glass], 2011, Vоl. 37, No. 5, рр. 129-135. (In Russ.). 14. Velyaev YU. O., Majorov D. V., Zaharov K. V. Issledovanie i razrabotka usovershenstvovannoj tekhnologii polucheniya alyumokremnievogo koagulyanta-flokulyanta na osnove sernokislotnogo vskrytiya nefelina [Research and development o f an improved technology for obtaining an aluminum-silicon coagulant- flocculant based on sulfuric acid opening o f nepheline]. Himicheskaya tekhnologiya [Chemical Technology], 2011, No. 10, рр. 614-620. (In Russ.). 15. Velyaev Y., Maiorov D., Kometiani I. Research on Obtaining Silica Xerogels from Nepheline and Study o f some o f their Physical and Chemical Properties. Materials Science Forum, 2019, ^ l . 989, рр. 121-126. Сведения об авторах Ю. О. Веляев — кандидат технических наук; Д. В. Майоров — кандидат технических наук; И. Б. Кометиани — кандидат биологических наук. Information about the authors Y. O. Velyaev — PhD (Engineering); D. V. Maiorov — PhD (Engineering); I. B. Kometiani — PhD (Biology). Статья поступила в редакцию 19.03.2021; одобрена после рецензирования 01.04.2021; принята к публикации 05.04.2021. The article was submitted 19.03.2021; approved after reviewing 01.04.2021; accepted for publication 05.04.2021. 59

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