Environmentally friendly epoxyamine filled compositions curing under the low temperatures

Authors

  • Юлія Михайлівна Данченко Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002, Ukraine
  • Роман Олександрович Биков Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002, Ukraine
  • Марія Павлівна Качоманова Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002, Ukraine
  • Тетяна Миколаївна Обіженко Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002, Ukraine
  • Наталія Геннадіївна Білоус Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002, Ukraine
  • Антін Віталійович Антонов Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002, Ukraine

DOI:

https://doi.org/10.15587/1729-4061.2013.19165

Keywords:

epoxy-amine compositions, disperse mineral fillers, catalytic effect, E-factor, atom efficiency

Abstract

 It is established that in comparison with other polymeric bind­ers, the processes of obtaining the epoxy-amine compositions, used in construction, meet 8 of 12 principles of “green” chemistry. It is shown that the use of low-molecular weight substances as acid catalysts of the curing reaction reduces the value of E-factor by one order and the value of atom efficiency of the process by two orders. It is experimentally proved that the disperse mineral fillers, which have hydroxyl groups with various functions of acidity on the surface, can be used for the acceleration of reaction of cross-linking in the production of polymeric construction materials based on the epoxy-amine compositions. This will allow to improve the environmental safety of the preparation, application, use and utilization of these materials by the exclusion of toxic and environmentally hazardous to humans and biosphere low-molecular weight substances.

Author Biographies

Юлія Михайлівна Данченко, Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002

Candidate of engineering sciences, associate professor, managing a department

Department of General Chemistry

Роман Олександрович Биков, Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002

Candidate of engineering sciences, associate professor

Department of General Chemistry

Марія Павлівна Качоманова, Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002

Candidate of engineering sciences, junior scientist

Department of General Chemistry

Тетяна Миколаївна Обіженко, Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002

Candidate of engineering sciences, associate professor

Department of General Chemistry

Наталія Геннадіївна Білоус, Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002

Master's degree

Антін Віталійович Антонов, Kharkiv National University of Civil Engineering and Architecture Sumskaya 40, Kharkov, Ukraine, 61002

Student

References

  1. Anastas, P.T. Green Chemistry: Theory and Practice [Text] / J.C. Warner. - New York : Oxford University Press, 1998. – p. 30.
  2. Guterman, L. «Green chemistry» movement seeks to reduce hazardous byproducts of chemical processes [Text] / L. Guterman // Chronicle of Higher Education. – 2000. – T.46, №48. – С.A17.
  3. Green Chemistry [Text] // Chemical Business. – 2001. – T.15,№8. – C. 5-6.
  4. Лунин, В.В. «Зеленая» химия в России [Текст] / В.В. Лунин, Е.С. Локтева // Зеленая химия в России. Сб. статей. – М.: Изд-во Моск. ун-та, 2004. – С. 9-23.
  5. Pinkowska, H. Green Chemistry of polymers [Text] / H. Pinkowska // Polimery / Polymers. – 2006. – T.51, №11-12. – P.836-842.
  6. Сорокин, М.Ф. Химия и технология пленкообразующих веществ [Текст] / М.Ф. Сорокин, Л.Г. Шодэ, З.А. Кочнова. – М.: «Химия»,1981. – 448 с.
  7. Мошинский, Л. Эпоксидные смолы и отвердители [Текст] / Л. Мошинский. – Тель-Авив: Аркадия пресс. Лтд, 1995. – 370 с.
  8. Данченко, Ю.М. Физико-химические особенности процессов структурирования эпоксиполимеров строительного назначения [Текст] / Ю.М. Данченко, Р.А. Яковлева, Т.Н. Обиженко, В.А. Андронов // Вестник БГТУ им. Шухова. – 2010. - №3. – с. 11-15.
  9. Осипчик, В.С. Исследование влияния поверхностных свойств бентонита на процессы отверждения эпоксиаминных композиций [Текст] / В.С. Осипчик, Р.А. Яковлева, Ю.М. Данченко и др. // Успехи в химии и химической технологии: сб. науч. тр. – 2007. – Т.XXI, №6(74). – С.40-43.
  10. Mdoe, J.E.G. Organically modified mesoporous silicas as base catalysts for green chemistry [Text]: dis.- 0488 – chemistry, inogenic / J.E.G. Mdoe. – The University of York (United Kingdom). – 2005.
  11. Торопов, Н.А. Кристаллография и мінералогія [Текст] / Н.А. Торопов, Л.Н. Булак . - Л.: Стройиздат, 1972. – 503 с.
  12. Зуев, В.В. Конституция и свойства минералов: (Остовно-электрон. подход к исслед. некоторых основных пробл. конституции минералов) [Текст] / В.В. Зуев. Л.: Наука, Ленингр. отд-ние, 1990. – 280 с.
  13. Минералогическая энциклопедия [Текст] / под ред.. К. Фрея.. - Л., 1985. – 512 c..
  14. Винчелл, А.Н. Оптические свойства искусственных минералов [Текст] / А.Н. Винчелл , Г. Винчелл. – М.: Изд-во Мир, 1967. – 528 c.
  15. Практикум з науково-дослідної роботи студентів та аспірантів. Полімери в будівництві [Текст]: навч. посіб. / Р.А. Яковлєва, Т.М. Обіженко, Ю.М. Данченко и др. – Х.: ХНУБА, 2012. – 150 с.
  16. Anastas, P.T., Warner J.C. (1998). Green Chemistry: Theory and Practice. Oxford University Press, 30.
  17. Guterman, L. (2000). «Green chemistry» movement seeks to reduce hazardous byproducts of chemical processes. Chronicle of Higher Education, 46, 48, A17.
  18. Green Chemistry. (2001). Chemical Business, 15, 8, 5-6.
  19. Lunin, V.V., Lokteva E.C. (2004). “Green” chemistry in Russia. “Green” chemistry in Russia. Collection of articles, 9-23.
  20. Pinkowska, H. (2006). Green Chemistry of polymers . Polymers, 51, 11-12, 836-842.
  21. Sorokin, M.F., Shode, L.G., Kochnova, Z.A. (1981). Chemistry and technology of film-forming substances, 448.
  22. Morshinskii, L. (1995). Epoxy resin and curing agents, 370.
  23. Danchenko, Yu.М., Yakovleva, R.A., Obizhenko, T.N. (2010). Physico-chemical characteristics of Structuring epoxy ware for construction. Application. Announcer BSTU named after V.G. Shukov, 3, 11-15.
  24. Osipchik, V.S., Yakovleva, R.A., Danchenko, Yu.М. (2007). Research of the influence of the bentonite surface properties on the curing procceses of the epoxyamine compositions. Successes in the chemistry and chemical technologies, XXI, 6, 40-43.
  25. Mdoe, J.E.G. (2005). Organically modified mesoporous silicas as base catalysts for green chemistry, dis.- 0488 – chemistry, inogenic / J.E.G. Mdoe. – The University of York (United Kingdom).
  26. Toropov, N.A., Bulak L.N. (1972). Crystallography and mineralogy, 503.
  27. Zujev, V.V. (1990). The constitution and properties of minerals, 280.
  28. Mineralogical encyclopedia (1985), 512.
  29. Vinchel, A.N., Vinchel G. (1967). Optical properties of synthetic minerals, 528.
  30. Danchenko, Yu.М., Yakovleva, R.A., Obizhenko T.N. (2012). Workshop on research of students and postgraduates. Polymers in constructions, 150.

Published

2013-12-11

How to Cite

Данченко, Ю. М., Биков, Р. О., Качоманова, М. П., Обіженко, Т. М., Білоус, Н. Г., & Антонов, А. В. (2013). Environmentally friendly epoxyamine filled compositions curing under the low temperatures. Eastern-European Journal of Enterprise Technologies, 6(10(66), 9–12. https://doi.org/10.15587/1729-4061.2013.19165