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Sludge of Oil Refining Units and Their Processing

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the quantitative characteristics of multi-tonnage technogenic wastes in Ukraine and the IvanoFrankivsk region, which cause environmental pollution. The water silts containing petroleum products are particularly dangerous wastes. It is proposed to recycle them using the method of preparation of the raw mixture in composition with the following technogenic wastes: oil sludge, ash, zeolite material, calcium-containing compounds, and organic mineral binders. They are granulated and subjected to the thermal treatment at low temperatures. The granular materials made using the oil-containing silt of the model object reduce the negative impact onto the environment of the region and increase its level of environmental safety.
Rocznik
Strony
169--177
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
  • G.V. Kurdyumov Institute for Metal Physics, NAS of Ukraine, 36 Academician Vernadskyy Boulevard, 03680, Kyiv, Ukraine
  • Naftokhimik Prykarpattya, PJSC, 5 Maydanska Street, Nadvirna, 78400, Ivano-Frankivsk Region, Ukraine
  • Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Street, 76019, Ivano-Frankivsk, Ukraine
  • Lviv Polytechnic National University, 12 Stepan Bandera Street, 79013, Lviv, Ukraine
  • Lviv Polytechnic National University, 12 Stepan Bandera Street, 79013, Lviv, Ukraine
Bibliografia
  • 1. Akhmetov A.F., Gaysina A.R., Mustafin I.A. 2011. Methods for utilization of different origin oil sludges. Oil and gas business, 9(3). 98–101.
  • 2. Blinnikova O. (Ed.) 2018. Statistical yearbook of the Ivano-Frankivsk region for 2017. Main department of statistics in Ivano-Frankivsk oblast, IvanoFrankivsk. (in Ukrainian)
  • 3. Bogoslavets М. 2018. Statistical report of the facility of JSC “Naftohimik Prykarpattya” in the form of “2-TP water system”, “2-TP air”, “2-TP solid waste, sludge” for 2015–2017, Nadvirna.
  • 4. Borodin M. 2016. Challenges and prospects for development of Ukrainian oil and gas complex entities. Baltic Journal of Economic Studies, 2(3), 23–28. DOI: 10.30525/2256–0742/2016–2-3–23–28.
  • 5. Brauweiler H.-C., Shkola V., Markova O. 2017. Economic and legal mechanisms of waste management in Ukraine. Journal “Marketing and Management of Innovations”, 2, 359–368. DOI: 10.21272/mmi.2017.2–33
  • 6. Chelyadyn L.I., Sanytskyy M.A., Novosad P.V., Chelyadyn V.L. 2010. Patent for utility model UA 47233. B09B 3/00. Method of utilization of ash-slime waste.
  • 7. Chelyadyn V.L., Novosad P.V., Chelyadyn L.I., Maruschak U.D. 2016a. Technology of complex recycling of anthropogenic waste. Vesnik of Brest University. Series 5. Chemistry. Biology. Sciences about Earth, 1, 5–12.
  • 8. Chelyadyn V.L., Bogoslavets М.М., Chelyadyn L.I. 2016b. Processing technologies of technologenic waste into filter media for sewage treatment of industrial objects. In: H. Sobczuk, B. Kowalska (Eds.) “Water Supply and Wastewater Removal”, Politechnika Lubelska, 15–25.
  • 9. Chelyadyn L. 2018a. Ecotechnology of industrial projects in the region: monograph, Ivano-Frankivsk: NTUNG, 254 p.
  • 10. Chelyadyn L.I., Novosad P.V., Skorokhoda V.J., Burylo O.P., Chelyadyn V.L. 2018b. Patent for utility model UA 122605. C04B 18/06, C04B 18/20, C04B 24/24, C04B 18/04, B01J 20/02, B01J 20/22. Raw material mixture of technogenic waste.
  • 11. Dolina L.F. 2005. Modern technology and facilities for oil wastewater treatment. Dnepropetrovsk: Continent, 296 p. (in Russian).
  • 12. Dvorkin L.J., Dvorkin O.L., Zhitkovsky V.V. 2011. Decision construction and technological problems by mathematical experiment planning. – Tutorial. Rivne: NUWM, 175 p. (in Ukrainian)
  • 13. DSTU B V.2.7–170:2008 – Concretes. Methods for determining average density, humidity, water absorption, porosity and water resistance (in Ukrainian).
  • 14. DSTU B V.2.7–214:2009 – Building materials. Concretes. Methods for determining the strength of control samples (in Ukrainian).
  • 15. DSTU B V.2.7–264:2011 – Porous inorganic aggregates for construction work. Test methods (in Ukrainian).
  • 16. Jаmali S., Gima A., Hasan S.W. 2015. Recent improvements in oily wastewater treatment: Progress, challenges, and future opportunities, Journal of Environmental Sciences, 37, 15–30. DOI: 10.1016/j.jes.2015.04.011.
  • 17. Johnson O.A. and Affam A.C. 2019. Petroleum sludge treatment and disposal: A review. Environmental Engineering Research, 24(2), 191–201. DOI: 10.4491/eer.2018.134.
  • 18. Mazlova E.A. and Meshcheryakov S.V. 2001. The problem of disposal of sludge and methods for their processing. Moscow: Publishing House “Noosphere”, 56 p. (in Russian).
  • 19. Nadesan M.S., Dinakar P. 2017. Structural concrete using sintered flyash lightweight aggregate: A review. Construction and Building Materials, 154, 928–944. DOI: 10.1016/j.conbuildmat.2017.08.005.
  • 20. Nazarov V.D., Nazarov M.V., Razumov V.Ju. 2013. RU 2490305. C10G 1/00, C10G 33/00, C02F 1/465. Method for treatment of stable oil emulsified crude and used oil sludge.
  • 21. Novosad P.V., Chelyadyn L.I., Chelyadyn V.L. 2009. Thermal insulation materials based on technogenic wastes. Bulletin of Lviv Polytechnic National University, series “Theory and Building Practice”, 655, 208–213.
  • 22. Novosad P.V., Poznyak O.R., Melnyk V.M., Braichenko S.P. 2020. Porous thermal insulation materials on organic and mineral fillers. In: Z. Blikharskyy, P. Koszelnik, P. Mesaros (Eds.), Proceedings of CEE 2019 “Advances in Resource-saving Technologies and Materials in Civil and Environmental Engineering” – Book Series V. 47: Lecture Notes in Civil Engineering, Springer International Publishing, 354–360.
  • 23. Prokopenko O. (Ed.). 2018. Statistical yearbook. Environment of Ukraine 2017. State Statistics Service of Ukraine, Kyiv (in Ukrainian).
  • 24. Rudiuk M.V., Markina L.M., Koval O.M. 2006. Patent for the invention UA 74635. C10G 1/00, F23G 5/027. Method for thermal utilization of oil slime and installation for its realization.
  • 25. Stechyshyn M., Sanytskyy M., Poznyak O. 2015. Durability properties of high volume fly ash selfcompacting fiber reinforced concretes. Eastern-European Journal of Enterprise Technologies, 3/11(75), 49–54. DOI: 10.15587/1729–4061.2015.44246.
  • 26. Tsymbalyuk A. 2011. Genadi Man: “Ukrainian scientists have learned to return to” waste “production hydrocarbons”. Gazeta-2000 https://www.2000.ua, 17 (556) 29 april – 5 may. (in Russian). 17556_456347.pdf
  • 27. Vambol S.O., Strokov O.P., Vambol V.V., Kondratenko O.M. 2015. Modern methods for improving the ecological safety of power plants exploitation: monograph. Kharkiv: NAKU, 212 p. (in Ukrainian).
  • 28. Vdovenko S., Boichenko S., Kochubei V. 2015. Composition and properties of the refinery oily sludge. Chemistry and Chemical Technology, 9(2), 257–260, (in Ukrainian) DOI: 10.23939/chcht09.02.257.
  • 29. Vozniuk V.I., Shapovalova L.P. Patent for the invention UA 76956. B09B 3/00, B09C 1/00, B08B 3/04, B01D 11/04. Method for processing oil slimes (2006).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6e299e75-e977-4364-b5e6-36034ed8899b
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