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Chirkova, Y., & Arkhipov, I. (2018). Modern requirements for motor gasoline. Alley of Science, 21-32.
Ershov, M., & Emelyanov, V. (2014). Production of promising automobile and aviation gasolines in Russia. National Oil and Gas Forum, 19.
Gureev, A., & Azev, V. (1996). Automotive gasolines, properties and applications. Moscow: Neft’ i gaz Publ.
Imdadul, H., Masjuki, H., Kalam, M., Zulkifli, N., Rashed, M., Rashedul, H., & Islam, M. (2015). RSC Adv, 74.
Kapustin, V., & Rudin, M. (2013). Chemistry and technology of oil refining. Moscow: Khimiya Publ.
Kapustin, V., Chernysheva, E., & Khakimov, R. (2015). New technologies for the production of high-octane gasoline. Business magazine Neftegaz.RU., 24–28.
Kayumov, Z., Nurullaev, S., & Turabdzhanov, S. (2015). Development of new composite automotive fuels with nitrogen and oxygen-containing environmentally friendly components. Progressive Technologies and Processes, 50-52.
Khavkin, V. (2008). New technologies for the production of motor fuels. World of Petroleum Products, 8-12.
Kirgina, M. (2019). Optimization of gasoline blending recipes using a computer modeling system. Business Magazine Neftegaz.RU, 70-74.
Levinbuk, M. (2010). Reducing the total content of aromatic hydrocarbons and benzene in reformates. World of Petroleum Products, 7-12.
Maryshev, V., Mozhaiko, V., & Sorokin, I. (2005). Removal of benzene from reformate products. Catalyst and process for benzene hydroisomerization. Oil refining and Petrochemicals, 9-10.
Mirzamakhmudov, Z., Jalilov, A., & Nurkulov, F. (2021.). Study of anti-knock additives based on metal-containing modifiers. Universum: Technical Sciences, 7-2(88), 66-69.
Nurmukhametova, E., Akhmetov, A., & Rakhmatullin, A. (2014). Research on catalytic cracking gasoline. Oil and Gas Business(2), 181-193.
Polyakov, S. (2014). Gasoline dielectric control device. PhD thesis.
Ryabov, V. (2020). Chemistry of oil and gas. Moscow: Chimiya Publ.
Safonov, A., Ushakov, A., & Oreshenkov, A. (2008). Prospects for improving the quality of automobile fuels in the Russian Federation. ChemMotToring, 21-24.
Saidakhmedov, S. (2013). Development of anti-knock oxygen-containing compositions based on local raw materials of the Republic of Uzbekistan. Тashkent.
Temereva, I., & Smirnova, T. (2020). Modification of the formulation of motor gasoline using the compounding method. Electronic scientific and methodological journal of Omsk State Agrarian University, 1(20), 3.
Urmatov, R., & Salakhov, I. (2018). Development of formulations for motor gasoline grades AI92 and AI-95. Alley of Science, 6(5), 715-721.
Zolotarev, A., Kuznetsov, S., & Levinbuk, M. (2013). Prospects for the high-octane additives market in Russia. The chemical journal., 42-44.
Zolotarev, A., Kuznetsov, S., & Levinbuk, M. (2013). Some performance characteristics of high-octane gasoline additives: TAME, MTBE and alkyl gasoline. The world of petroleum products. Oil Companies Bulletin, 8-11.