Please use this identifier to cite or link to this item: https://er.nau.edu.ua/handle/NAU/37686
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dc.contributor.authorБойченко, Сергій Валерійович-
dc.contributor.authorВовк, Оксана Олексіївна-
dc.contributor.authorЯковлєва, Анна Валеріївна-
dc.date.accessioned2019-02-06T08:23:04Z-
dc.date.available2019-02-06T08:23:04Z-
dc.date.issued2013-
dc.identifier.citationBoichenko, S., Vovk, O., & Iakovlieva, A. (2013). Overview of innovative technologies for aviation fuels production. Chemistry and Chemical Technology, 7(3), 305-312. Retrieved from www.scopus.comuk_UA
dc.identifier.issn1996-4196-
dc.identifier.urihttp://er.nau.edu.ua/handle/NAU/37686-
dc.description1. Fransua P.: Safran, 2007, 6, 44. 2. http://www.ifpenergiesnouvelles.com 3. Ergin D.: Dobycha: Vsemirnaya Istoria Borbi za Neft, Dengi i Vlast. Alpina Publisher, Moskwa 2011. 4. Andriishin M., Marchuk Ya., Boichenko S. and Ryabokon L.: Gaz Prirodnyi, Paliva ta Olivy. Astroprint, Odessa 2010. 5. Yanovskyi L., Dmitrenko V. and Dubrovkin N.: Osnovy Aviatsionnoi Himmotologii, MATI, Moskwa 2005. 6. Yanovskyi L., Fedorov E. and Varlamova N.: Visnyk Nats. Aviac. Univ., 2007, 3, 108. 7 Maus V., Jacob E., Bruck R. and Hirt P.: Cover Story Fuels. Motortechnische Zeitschrift, 2012, 73, 4. 8. Bratkov A., Seregin E. and Gorenkov A.: Himmotologiya Raketnih i Reaktivnih Topliv, Khimiya, Moskwa 1987. 9. Zakon Ukrainy "Pro Alternativni Vidy Energii", № 1391-VI (1391-17), 21.05.2009. 10. Standard 91-91 Turbine fuel, Kerosene type, Jet A-1. NATO Code: F-35. Joint Service Designation: AVTUR. 11. ASTM D1655 – 11b. Standard Specification for Aviation Turbine Fuels. 12. ASTM D7655 – 11a. Standard Specification for Aviation Turbine Fuel Containing Synthesized Hydrocarbons. 13. Hileman J., Wong H. and Donohoo P.: Omega Int. Conf. on Alternative Aviation Fuels. Royal Aeronautical Society, London 2008, 32. 14. Hileman J., Wong H. and Waitz I.: Near-Term Feasibility of Alternative Jet Fuels. RAND Corporation, Santa Monica, California 2009. 15. http://www.ifpenergiesnouvelles.com. 16. Krylov I. and Emeljanov V.: Mir Nefteproduktov, 2008, 1, 38. 17. www.tecbio.com.br. 18. Devyanin S., Markov V. and Semenov V.: Rastitelnie Masla i Topliva na ih Osnove dlya Diselnih Dvigatelei. Novoe Slovo, Kharkov 2007. 19. Nagornov S., Dvoreckyi D., Romancova S. and Tarov V.: Tekhnika i Tekhnologii Proizvodstva i Pererabotke Rastitelnih Masel, Izdatelstvo Tambov. Gos. Tech. Univ., Tambov 2010.uk_UA
dc.description.abstractThe article outlines problems of aviation industry connected with limitation of energy resources for aviation fuels production. Main ecological problems connected with application of conventional jet fuels are determined. Modern trends for transition from conventional aviation fuels to alternative ones are presented. The most popular technologies for alternative fuels production are discussed. Advantages of biofuels implementation in aviation are defined.uk_UA
dc.language.isoenuk_UA
dc.publisherLviv Polytechnic National Universityuk_UA
dc.relation.ispartofseriesCHEMISTRY AND CHEMICAL TECHNOLOGY;-
dc.subjectenergy resourcesuk_UA
dc.subjectjet fueluk_UA
dc.subjectalternative aviation fueluk_UA
dc.subjectbiokeroseneuk_UA
dc.subjectbiomassuk_UA
dc.titleOverview of innovative technologies for aviation fuels productionuk_UA
dc.typeArticleuk_UA
dc.specialityChemical Technologyuk_UA
Appears in Collections:Публікації у наукових виданнях співробітників кафедри екології

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