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Farhadian Abdolreza -
Фархадиан Абдолреза
2023
Tajik, A., Farhadian, A., Khelkhal, M. A., Rezaeisadat, M., Petrov, S. M., Eskin, A. A., ... & Ancheyta, J. (2022). Sunflower oil as renewable biomass source to develop highly effective oil-soluble catalysts for in-situ combustion of heavy oil. Chemical Engineering Journal, 139813.
1_s2.0_S1385894722052925_main.pdf
Новые производные аминокислот для эффективного хранения затвердевающего метана посредством клатратных гидратов без образования пены
Mirzakimov, U.Z.; Farhadian, A.; Semenov, M.E.; Pavelyev, R.S.; Heydari, A.; Chirkova, Y.F.; Varfolomeev, M.A.; Aimaletdinov, A.M.; Valiullin, L.R. Enhanced methane storage capacity in clathrate hydrate induced by novel biosurfactants: Kinetics, stability, in vivo, and biodegradation investigations. Journal of Energy Storage, 2023, 73, 108802.
2021
Пат. 2755790 Российская Федерация, МПК C07C309/22 C10L3/10. Промотор гидратообразования на основе касторового масла / М. А. Варфоломеев, А. Фархадиан, Р. С. Павельев, В. В. Ярковой, Ю. Ф. Зарипова, М. Е. Семенов. - № 2020141067; заявл. 14.12.20 ; опубл. 21.09.21.
F_Patent_2755790_Sulf_kast.pdf
Farhadian, A.; Khelkhal, M.A.; Tajik, A.; Lapuk, S.E.; Rezaeisadat, M.; Eskin, A.A.; Rodionov, N.O.; Vakhin, A. V. Effect of Ligand Structure on the Kinetics of Heavy Oil Oxidation: Toward Biobased Oil-Soluble Catalytic Systems for Enhanced Oil Recovery. Ind. Eng. Chem. Res. 2021, 60, 14713–14727.
acs.iecr.1c03276.pdf
2020
Journal of Natural Gas Science and Engineering, Volume 77, 103235
2019
Chemical Engineering Science, V. 206, P. 507-517
Scientific Reports, volume 9, Article number 9797
2018
The purpose of this study is to synthesize non-isocyanate poly (ester amide/urethane) networks, based entirely on vegetable oil through a green method, i.e., without solvent and having any rigid and aromatic structures to improve their thermal stability. For this purpose, first, three amines were synthesized from castor oil and oleic acid. Second, carbonated sunflower oil (CSFO) was obtained by reaction of epoxidized sunflower oil with CO2 at atmospheric pressure. In the final step, CSFO easily reacted with bio-based amines by melt-blending without catalyst to give corresponding non-isocyanate polyurethane (NIPU) networks. The Fourier-transform infrared spectroscopy (FTIR), nuclear magnetic resonance (NMR), X-ray powder diffraction (XRD), differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA) and thermogravimetric analysis (TGA) techniques were applied to characterize the structural, thermal and physical features of NIPU networks. In addition, to determine the envir
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Scientific and pedagogical experience:
6 years 6 months from 16.10.2017
General experience:
6 years 10 months from 16.10.2017
Experience in KFU:
3 years 7 months from 23.03.2021
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