SELECTION OF TECHNOLOGY FOR THE PRODUCTION AND PROCESSING OF DIMETHYL FUEL (DME) FROM METHANOL AND NATURAL GAS
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This article examines the issues of sustainable development of renewable energy sources and modern technologies for motor fuel production. In particular, it analyzes the effective application of cryogenic methods in obtaining various types of synthetic fuels, new technologies for producing motor fuel based on methanol, as well as the synthesis of dimethyl ether and its potential use as a fuel for diesel engines. The study also highlights the pathways of fuel production through methane conversion, the advantages of adiabatic processes in dimethyl ether production, and scientifically grounded solutions for environmental protection and the mitigation of ecological challenges.
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1. Лапидус А. Л., Крилова А. Е. Механизм образования жидких углеводородов из СО и Н₂ на кобальтовых катализаторах. – М.: Олимп.: 2015. 645 с.
2. Матковский П. Э., Седов И. В., Савченко В. И., Яруллин Р. С. Технологии получения и переработки синтез-газа // Газохимия. 2011, С.77-84.
3. Pачевский Б.С. «Сжиженные углеводородные газы», Москва, Изд-во «Нефть и газ», 2009.-640 с., ил.
4. Makhmudov, N. N., Shafiev, R. U., Yuldashev, T. R., & Tursunov, M. A. (2015). Technologu of collecting and preparing oil, gas and water in the fields. Textbook. T.: Tashstu.
5. Yuldashev, T. R., & Мakhmudov M, J. (2023). Cleaninng of Natural from Sobe Component. Journal of Siberian Federal University. Engineeng & Technologies, 16(3), 296-306.
6. Юлдашев, Т. P. (2023). ОЧИСТКА ГАЗА ОТ КИСЛЫХ КОМПОНЕНТОВ И ПУТИ ЕЁ PЕШЕНИЙ. Инновационный научно-технический пpогpесс. Задачи и их pешения (стp. 150-155).
7. Юлдашев, Т. Р. (2023). ОСНОВА ОБОРУДОВАНИЯ, ИСПОЛЬЗУЕМОГО В ПРОЦЕССЕ ОЧИСТКИ ГАЗОАБСОРБЦИОННОЙ ТЕХНОЛОГИИ. Universum: технические науки, (5-6 (110)), 20-24.
8. Юлдашев, Т. Р. (2023). АКТУАЛЬНЫЕ ПРОБЛЕМЫ АМИННОЙ ОЧИСТКИ ПРИРОДНЫХ ГАЗОВ И ПУТИ ИХ ИСПОЛЬЗОВАНИЯ. Universum: технические науки, (4-6 (109)), 24-27.
9. Yuldashev, T. R. (2023). TABIIY GAZLARNI VODOROD SULFID VA UGLEROD OKSIDLARIDAN TOZALASHDA QO‘LLANILADIGAN ABSORBENTLAR. Sanoatda raqamli texnologiyalar/Цифповые технологии в промышленности, 1(1), 92-99.
10. Yuldashev, T. R. (2023). TABIIY GAZNI NORDON KOMPONENTLARDAN TOZALASHDA SELEKTIVLIGI YUQORI BO‘LGAN AMINLI ERITMALARDAN FOYDALANISHNING SAMARADORLIGI. Sanoatda raqamli texnologiyalar/Цифpoвыe тeхнoлoгии в пpoмышлeннoсти, 1(1), 86-92.
11. Юлдaшев, Т. Р. (2022). АБСОРБЕНТЫ ДЛЯ ОЧИСТКИ ПРИРОДНЫХ ГАЗОВ ОТ Н2S И СO2. THEORY AND ANALYTICAL ASPECTS OF RECENT RESEARCH, 1(10), 72-74.
12. Юлдашев, Т. Р. (2022). ОПТИМИЗАЦИЯ ТЕХНОЛОГИИ ГЛУБОКОЙ ОЧИСТКИ ПРИРОДНОГО ГАЗА ОТ КИСЛЫХ КОМПОНЕНТОВ. MODELS AND METHODS FOR INCREASING THE EFFICIENCY OF INNOVATIVE RESEARCH, 2(18), 62-64.
13. Юлдашев, Т. Р., & Адизов, Б. З. ЭФФЕКТИВНЫЕ АСПЕКТЫ КОМПЛЕКСНОЙ МОДЕРНИЗАЦИИ ООО «МУБАРЕКСКОГО ГАЗОПЕРЕРАБАТЫВАЮЩЕГО ЗАВОДА». ҚарДУ ХАБ, 76.
14. Yuldashev, T. R., Eshniyozov, A. D., & Jabborov, N. X. R. (2025). TABIIY GAZNI NORDON KOMPONENTLARDAN TOZALASH QURILMALARIDA KO‘PIK HOSIL BO‘LISHINING MUAMMOLARI. Sanoatda raqamli texnologiyalar, 3(2). DOI: https://doi.org/10.70769/3030-3214.SRT.3.2.2025.16