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Efficiency of Sorbents Application for the Decrease of the Residual Content of Oil Products in the Industrial Waste

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Well drilling involves the formation of the bore mud in a form of drilled solids with waste drilling mud, containing oil products in its structure. Nowadays, the widely used methods such as thermal, physical and biological ones cannot be considered as complex approach to the solution of the problem of the oil refinery wastes handling. Introduction of the peat and natural mineral sorbents into the bore mud allows decreasing the residual content of the oil products, and, thus, decreasing the level of negative influence on the environment. On the basis of the conducted studies, it was revealed that different norms of sorbents and peat introduction into the bore mud decreased the concentration of oil products equally well; therefore, the recommended dosage of sorbents and peat at the low initial values of oil products can be 3–5%. When introducing glauconite in a form of flour and grain there it noted that the size of grain particles of the sorbent influenced insignificantly the decrease of oil products concentration in the bore mud. The use of natural mineral sorbents and peat favorably influences the development of plants. At the same time, the formation of viable phytocenosis with high value of phytomass of vegetative over-ground sprouts takes place.
Rocznik
Strony
36--40
Opis fizyczny
Bibliogr. 11 poz., tab.
Twórcy
  • Federal State Budget Educational Institution of Higher Education «Industrial University of Tyumen», Volodarskogo 38, 652000 Tyumen, Russia
  • Federal State Budget Educational Institution of Higher Education «Industrial University of Tyumen», Volodarskogo 38, 652000 Tyumen, Russia
  • Federal State Budget Educational Institution of Higher Education «Industrial University of Tyumen», Volodarskogo 38, 652000 Tyumen, Russia
Bibliografia
  • 1. Belov P.S., Golubeva I.A., Nizova S.A. Ecology of the production of chemical products from oil and gas hydrocarbons: a textbook for universities. 1991.
  • 2. Bulatov A.I., Makarenko P.P., Shemetov V.Yu. 1997. Environmental protection in the oil and gas industry, 292–311.
  • 3. Golubev E.V. Soromotin A.V. 2010. Composition and properties of drilling cuttings from Western Siberia. World of science, culture, education, 6 (25), 27.
  • 4. Gridin O.M., Arens V.Zh., Gridin A.O. 2000. To measure seven times. Advertising illusions and real prospects for the use of oil sorbents. Oil and gas vertical, 9, 28–32.
  • 5. Kornev V.A., Rybakov Yu. N. 2015. Mineral powdery sorbents of the bentonite type to eliminate spills of liquid oil products in the fuel pumping and storage areas. Problems of Modern Science and Education, 79–83.
  • 6. National Standard 12038–84. Agricultural seeds. Methods for determination of germination. 2019.
  • 7. Ovchinnikov V.P., Aksenova N.A., Grosheva T.V., Rozhnikova O.V. 2013. Modern compositions of drilling agents. Tyumen State University of Oil and Gas, 156.
  • 8. Ryadinsky V.Yu., Deneko Yu.V. 2004. Composition and properties of drilling cuttings from Western Siberia. Bulletin of the Tyumen State University. Socio-Economic and Legal Studies, 3, 51–55.
  • 9. Ryazanov A.Ya. 2005. Encyclopedia of drilling agents.
  • 10. Uzbekov F.M., Molotovilova L.V., Mokhov A.E., Sokolov S.A. 2003. De-toxicization of waste drilling agent and bore mud and their disposal as reclamants in the reclamation of disturbed soils. Environmental Protection in the Oil and Gas Complex, 5, 425–429.
  • 11. Vadetsky Yu. V. 2003. Drilling of oil and gas wells, 133–161.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-323327b4-ba77-4fab-8c19-781e1eb7ac9d
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