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Tytuł artykułu

Complex Sorption Treatment of Industrial Waste and Production of Plastic Lubricants

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article deals with the studies on complex sorption treatment of industrial waste of various industries to obtain new C, S, N-containing plastic lubricants, which provide antiwear, antifriction, high load-bearing and heat-resistant properties. The conditions for obtaining diethylammonium salt from the obsolete pesticide Banvel D and its sorption on a mixed sorbent, which consist of activated carbon (AC) and kieselguhr (K), have been established. The conditions for obtaining potassium diethyldithiocarbamate and its adsorption on the surface of the mixed sorbent (AC + K), followed by treatment with copper(II) sulfate of corresponding bis-(diethyldithiocarbamato)copper(II) sorbed on a solid surface, have been examined. The obtained substances of general composition [sorbent (AC + K)]·[(C2H5 )2NS(=S)S]2Cu were studied as active components of plastic lubricants, which provide their thickening, antiwear and antifriction properties. Industrial tribological research was carried out for friction pairs of four-row roller bearings of roller equipment used at private enterprise (PE) "Exim" (Kherson, Ukraine).
Twórcy
  • Vinnytsia National Technical University, 21021, Vinnytsia, Khmelnytske Road 95, Ukraine
  • Vinnytsia National Technical University, 21021, Vinnytsia, Khmelnytske Road 95, Ukraine
  • Vinnytsia Mykhailo Kotsiubynskyi State Pedagogical University, 21100, Vinnytsia, Ostrozhskogo Street 32, Ukraine
  • Vinnytsia National Technical University, 21021, Vinnytsia, Khmelnytske Road 95, Ukraine
autor
  • Vinnytsia National Technical University, 21021, Vinnytsia, Khmelnytske Road 95, Ukraine
autor
  • Vinnytsia Mykhailo Kotsiubynskyi State Pedagogical University, 21100, Vinnytsia, Ostrozhskogo Street 32, Ukraine
Bibliografia
  • 1. Ranskiy A., Khudoyarova O., Gordienko O., Titov T., Kryklyvyi R. 2019. Regeneration of Sorbents Mixture after the Purification of Recycled Water in Production of Soft Drinks. J. Water Chem. Technol., 41(5), 318–321.
  • 2. Ranskiy A., Gordienko O., Evseeva M., Avdienko T. 2010. Disposal of chlorine-containing pesticides. Voprosy Khimii I Khimicheskoi Tekhnologii, 5, 121–124.
  • 3. Khudoyavora O., Gordienko O., Sydoruk T., Titov T., Ranskiy A. 2020a. Surface modification of mixed sorbents in sulfide ions for purification of galvanic industrial waters of the copper plating process. Bulletin of the National Technical University of Ukraine, Kyiv Polytechnic Institute namedafter Igor Sikorsky. Series Chemical Engineering, Ecology and Resource Conservation, 2(19), 36–46.
  • 4. Malovanyy M., Sakalova H., Vasylinycz T., Palamarchuk O., Semchuk J. 2019. Treatment of Effluents from Ions of Heavy Metals as Display of Environmentally Responsible Activity of Modern Businessman. J. Ecol. Eng., 20(4), 167–176
  • 5. Ranskiy A., Titov T., Avdienko T. 2013. Production of metal xanthates by reagent processing of carbon disulfide of the head fraction of coke enterprises. Russian Environmental Bulletin, 11, 18–21.
  • 6. Khudoyarova O., Gordienko O., Titov T., Ranskiy A., Dykha A. 2020b. Adsorptive regeneration of waste industrial oils. Problems of Tribology, 25(2/96), 19–24.
  • 7. Khudoyarova O., Gordienko O., Blazhko A., Sydoruk T., Ranskiy A. 2020c. Desulfurization of Industrial Water-Alkaline Solutions and Receiving New Plastic Oils. J. Ecol. Eng., 21(6), 61–66.
  • 8. Tarasevich B. 2012. IR spectra of the main classes of organic compounds: Handbook material. Moscow, MSU.
  • 9. Nakamoto K. 1991. Infrared and Raman Spectra of Inorganic and Coordination Compounds. Moscow, Mir.
  • 10. Ishchuk Y. 1996. The Composition, Structure and Properties of Greases. Kyiv, Naukova Dumka.
  • 11. Halls D. 1969. The Properties of Dithiocarbamates. A Review. Microchimica Acta, 57(1), 62–77.
  • 12.Ranskiy A., Petruk V., Тhor I., Ohtina О. 2005. Chemistry of Dithiocarbamates. Message II. Desulfurization of Thiuram Disulfides by Nucleophilic Reagents. Voprosy Khimii I Khimicheskoi Tekhnologii, 6, 74–77.
  • 13. Khudoyarova O., Ranskiy A., Korinenko B., Gordienko O., Sydoruk T., Didenko N., Kryklyvyi R. 2021. Integration of Technological Cycles of Industrial Waste Processing. J. Ecol. Eng., 22 (6), 209–213
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-df2852d9-8b39-4ded-ad83-b6db0cade906
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