THERMODYNAMICS AND MECHANISM OF OIL ADSORPTION PROCESS BY THERMOGRAPHITE

Authors

  • K. K. Kudaibergenov Non-commercial joint-stock company “Al-Farabi Kazakh National university”
  • G. R. Nyssanbayeva Non-commercial joint-stock company “Al-Farabi Kazakh National university”
  • D. Amanjolova Non-commercial joint-stock company “Al-Farabi Kazakh National university”
  • G. O. Tureshova Non-commercial joint-stock company “Al-Farabi Kazakh National university”
  • E. K. Ongarbayev Non-commercial joint-stock company “Al-Farabi Kazakh National university”
  • Z. A. Mansurov Non-commercial joint-stock company “Al-Farabi Kazakh National university”
  • A. Baytimbetova Satbayev University

Keywords:

thermographite, thermodynamics, kinetics, adsorption, oil absorption, reagent composition, ferromagnet

Abstract

In this work synthesis of the production of expanded graphite is proposed. It's used as a sorbent for the elimination of oil. It΄s characteristics, kinetics, and properties were investigated. The mechanism of oil adsorption is established. The magnetic properties of thermographite were also determined.

References

[1] Siyavush Karayev Karam Shykhaliev. Environmental problems of transportation of oil and oil products and new methods of cleaning the water surface from oil and oil products. – Hannover: EAAEN, 2014. 44 p.
[2] Inagaki M., Toyoda M., Iwashita N., Nishi Y., Konno H. Exfoliated Graphite for Spilled Heavy Oil Recovery // Carbon Science. 2001. Vol. 2, N 1. P. 1-8.
[3] Toyoda M., Aizawa J., and Inagaki M. Sorption and recovery of heavy oil by using exfoliated graphite // Desalination. 1998. Vol. 4, N 115. P. 199-201.
[4] Thermally expanded graphite: properties and production. S.T. Tursynbek, G.O. Tureshova, K.K. Kudaibergenov, S. Lyubchik, E.K. Ongarbayev, Z.A. Mansurov. // Combustion and Plasma Chemistry. Almaty: Kazakh university, 2016. Vol. 14, N 2. P. 150-157.
[5] Kinetics of thermolysis of intercalated graphite compounds. K.K. Kudaibergenov, G.R. Nyssanbaeva, G.O. Turshova, G.A. Spapanova, E.K. Onangarbayev, Z.A. Mansurov, S.B. // Lyubchik plasmochemistry. Almaty: Kazak universiteti, 2016. Vol. 14, N 2. P. 144-150.
[6] Toyoda M., Aizawa J., and Inagaki M. Sorption and recovery of heavy oil by using exfoliated graphite // Desalination. 1998. Vol. 4, N 115. P. 199-201.
[7] Corinokina N.N., Avdeev V.V. The commemorative nano-emotional nature of the internal grafit: training. 2010. 100 p.
[8] Baron N.M., Ponomareva A.M., Ravdel A.A. A short reference book of physical and chemical quantities. L.: Chemistry, 1983. 232 p.
[9] Kireev V.A. Methods of practical calculations in the thermodynamics of chemical reactions. M.: Chemistry, 1985. 536 p.
[10] Levy E. Crystallography and crystal chemistry of a material with layered structures / Ed. Dordrecht. Holland Reidel publ., 1976. P. 422.
[11] Burleshin M. Grafitprichoditna the name of the act // Vecnik Mochenergo. 2001. N 9. P. 3-4.
[12] Mofa N.N., Chervyakova O.V., Ketegenov T.A., Mansurov Z.A. Magnetic sorbents. Received by mechanochemical treatment of quartz-containing mixtures // Chemistry for Sustainable Development. 2003. N 11. P. 755-761.
[13] Ubellov A.D., Lewis F.A. Grafit i ego kristallicheskie coedyneniya. M.: Mir, 1965. 265 p.

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Published

2021-05-03