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{"references": ["1. Oripova L.N., Khayitov R.R. Obtaining activated carbon from wood and stone raw materials // Universum: technical sciences: electron. scientific magazine - 2021. - No. 9(90). - pp. 14-17.", "2. Bakhramov N.I., Teshaeva M.Sh., Khayitov R.R. Development of a method for obtaining activated carbon from local raw materials for the adsorption purification of spent amine solutions // \"Science and Education\" scientific journal. - Volume 3. - Issue 4. 2022. - R. 377-383.", "3. Akhadov A.A., Murodov M.N., Khayitov R.R., Oripova L.N., Toshkuziev T.M. Determination of the structural and sorption properties of activated carbon obtained from the shell of apricot seeds // \"Science and Education\" scientific journal. - 2021. - Vol. 2. - No. 1. - S. 52-58.", "4. Chudievich D.A. Improving the technology of defoaming at the installations of amine desulphurization of hydrocarbon gases: Abstract of the thesis. dis. Ph.D. - Astrakhan, 2000. - 25 p.", "5. Agaev G.A. Foam Control in the Process of Amine Treatment of Natural Gas. - M.: VNIIEgazprom. 1979. - 33 p.", "6. Strizhov I.N. Gas production. - Moscow-Izhevsk: Institute for Computer Research, 2003. - 376 p.", "7. RF patent No. 2198722. Method for preventing foaming of amine solutions / Lykova L.F., Pestovnikov O.D., Prokhorov E.M., Tarakanov G.V., Chudievich D.A. Appl. 06/08/2001, Published. 02/20/2003.", "8. Oripova L.N., Khayitov R.R. Research of foaming characteristics of DEA and MEA // International Journal of Advanced Research in Science, Engineering and Technology, 2022. - Vol. 9. - Issue 5. - P. 19328-19333.", "9. Khayitov R.R. Development of technology for obtaining activated carbon from local raw materials for the purification of waste amine solutions: Abstract of the thesis. d.t.s. - Tashkent, 2019. - 67 p.", "10. Kienle H., Bader E. Activated carbons and their industrial application (translated from German). - L .: Chemistry, 1984. - C. 215.", "11. Weltia N., Bondar-Kunzea E., Singerb G., Tritthartd M., Zechmeister-Boltensterne S., Heina T., Pinay G. Large-scale controls on potential respiration and denitrification in riverinefloodplains // ELSEVIER. - 2012, Marth. - P. 73-84.", "12. Ansaa E.D.O., Lubberdingb H.J., Ampofoa J.A., Amegbea G.B., Gijzenb H.J. Attachment of faecal coliform and macro-invertebrate activity in the removal of faecal coliform in domestic wastewater treatment pond systems // ELSEVIER. - 2012, Marth. - \u0420. 35-41.", "13. Salimov I.R., Murodova Yu.M., Murodov M.N., Tilloev L.I., Khayitov R.R. Determination of the optimal regime for obtaining activated carbon from the shell of fruit stones for the purification of alkanolamines // Universum: Technical sciences: electron. scientific magazine - Moscow (RF), 2020. - No. 7 (76). - S. 77-81.", "14. Khayitov R.R., Shermatov B.E., Eshonkulov U.U., Narmetova G.R. Carbonization of apricot kernels and steam activation of carbonizate to obtain activated carbon // Uzbek chemical journal. - Tashkent, 2017. - No. 3. - S. 65-694.", "15. Khayitov R.R., Eshonkulov U.U., Narmetova G.R. Activated carbons from local raw materials for the regeneration of alkanolamines for natural gas purification instead of sorbent AG-3 // Scientific and technical journal: World of petroleum products. Bulletin of oil companies. - Moscow (RF), 2016. - No. 11. - S. 43-46.", "16. Khayitov R., Narmetova G. Production of activated coal from the pits of apricots and peach for the adsorption purification of the waste Diethanolamine // Austrian Journal of Technical and Natural Sciences \u00abEast West\u00bb Association for Advanced Studies and Higher Education GmbH. - Vienna, 2016. - \u2116 7-8. - \u0420. 67-706.", "17. Khayitov R.R., Naubeev T.Kh., Sapashov I.Ya., Khaidarov B.A., Abdikamolov D.Kh. Determination of physicochemical and adsorption characteristics of new activated carbon from apricot seeds // Universum: Technical sciences: electron. scientific magazine - Moscow (RF), 2017. - No. 2 (35).", "18. Khayitov R., Narmetova G. Regeneration of alkanolamines used in natural gas purification // Journal of Chemical Technology and Metallurgy. - Bulgaria, 2016. - V.51. - \u2116 3. - P. 12-16.", "19. Khayitov R., Narmetova G., Shermatov B. Regeneration of activated carbon used in adsorption purification of alkanolamines // Austrian Journal of Technical and Natural Sciences \u00abEast West\u00bb Association for Advanced Studies and Higher Education GmbH. - Vienna, 2016. - \u2116 7-8. - \u0420. 75-77.", "20. Shermatov B.E. Development of technology for obtaining recuperative and clarifying sorbents from cotton lignin: Cand. for the scientific degree of Cand. those. Sciences. - T .: Uzbek Research Institute of Chemical Technology and Catalysis, 1994. - 117 p."]}
At present, the production of activated carbons (AC) is steadily growing, and the areas of their industrial application are continuously expanding. There are four main gas processing plants in Uzbekistan, where spent amine solutions, such as diethanolamine (DEA) and methyldiethanolamine (MDEA), are filtered using activated carbons of the AG-3, HX-30, Chemveron grades at natural gas amine purification plants from acidic components. etc. The latter are of foreign origin and are imported for currencies.
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