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Leading laboratory on development of polymeric membranes
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Голубев Георгий Сергеевич


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Голубев Георгий Сергеевич
Научный сотрудник (к.х.н.)

Год рождения: 1989

ORCID: 0000-0001-7107-2691
ResearcherID: Q-2745-2019
Scopus Author ID: 57190061314
Scholar Google: Georgy Golubev
SPIN: 5012-0373
IstinaResearcherID (IRID): 54449144



Образование
  • 2007-2012 – Кафедра химической технологии углеродных материалов, Факультет технологии органических веществ и химико-фармацевтических средств, Российский химико-технологический университет им. Д. Менделеева.
  • 2012-2016 – аспирантура (ИНХС РАН; научный руководитель к.х.н. Борисов И.Л.)
  • 2019 – научная степень к.х.н. (специальность: «Мембраны и мембранная технология»); Институт нефтехимического синтеза им. А.В. Топчиева РАН

Профессиональная карьера
  • 2012-2020 – младший научный сотрудник (Лаборатория полимерных мембран, ИНХС РАН).
  • 2020-н.в. – научный сотрудник (Лаборатория полимерных мембран, ИНХС РАН).

Награды
  • Диплом «За 2-е место в конкурсе стендовых докладов молодых учёных на XII Российской конференции «Актуальные проблемы нефтехимии» (2021).
  • Диплом «За 2-е место в конкурсе стендовых докладов молодых ученых на Международной конференции «5th International Scientific Conference on Pervaporation, Vapor Permeation, and Membrane Distillation» (2017).
  • Диплом «За 2 место в молодежном конкурсе научных работ на Международной конференции «Ионный транспорт в органических и неорганических мембранах» (2016).
  • Лучший стендовый доклад на Международной конференции «Ионный транспорт в органических и неорганических мембранах» (2015).

Области интересов
  • Мембраны, мембранная дистилляция, вакуумная первапорация, термопервапорация, электродиализ, очистка воды, извлечение спиртов из ферментационной смеси, извлечение ценных компонентов из геотермальных вод.

Патенты
  • В.П.Василевский, Г.С.Голубев, И.Л.Борисов, И.С.Еремеев, А.В.Волков. Дистилляционный модуль для концентрирования и опреснения водного раствора и способ концентрирования и опреснения водного раствора с его применением. Патент РФ № 2737524 от 01.12.2020 Бюл. № 34

Публикации
  • T.N.Rokhmanka, E.A.Grushevenko, S.A.Shirokikh, G.S.Golubev. Poly(trifluoroethylacrylatemethylsiloxane) and Polydecylmethylsiloxane Copolymer: A New Polymer for Membrane Applications. INEOS OPEN, 7 №1-3 (2024) 15-17
  • Е.А.Grushevenko, Т.N.Rokhmanka, A.V.Balynin, G.S.Golubev, I.L.Borisov. Trifluoroethylacrylate-substituted polymethylsiloxane—promising membrane material for separating an ABE fermentation mixture. Membranes and Membrane Technologies, 13 №6 (2023) 452-463 (in Russian)
  • T.N.Rokhmanka, E.A.Grushevenko, O.V.Arapova, G.N.Bondarenko, G.S.Golubev, I.L.Borisov, A.V.Volkov. Fouling of Polyalkylmethylsiloxane Composite Membranes during Pervaporation Separation of ABE-Fermentation Mixtures. Applied Sciences, 13 №6 (2023) 3827
  • E.Dmitrieva, E.Grushevenko, D.Razlataya, G.Golubev, T.Rokhmanka, T.Anokhina, S.Bazhenov. Alginate Ag for Composite Hollow Fiber Membrane: Formation and Ethylene/Ethane Gas Mixture Separation. Membranes, 12 №11 (2022) 1090
  • G.S.Golubev, S.E.Sokolov, T.N.Rokhmanka, D.S.Bakhtin, I.L.Borisov1, A.V.Volkov. Membranes Based on PTMSP and Hypercrosslinked Polystyrene for Gas Separation and Thermopervaporative Removal of Volatile Organic Compounds from Aqueous Media. Membranes and Membrane Technologies, 12 №6 (2022) 459-469 (in Russian)
  • G.S.Golubev, S.E.Sokolov, T.N.Rokhmanka, D.S.Bakhtin, I.L.Borisov, A.V.Volkov. Membranes Based on PTMSP and Hypercrosslinked Polystyrene for Gas Separation and Thermopervaporative Removal of Volatile Organic Compounds from Aqueous Media. Membranes and Membrane Technologies, 4 (2022) 404-413
  • G.S.Golubev, A.V.Balynin, I.L.Borisov, A.V.Volkov. Thermopervaporation with a Porous Condenser for Triethylene Glycol Dehydration. Membranes and Membrane Technologies, 12 №4, (2022) 276-285 (in Russian)
  • G.S.Golubev, A.V.Balynin, I.L.Borisov, A.V.Volkov. Thermopervaporation with a Porous Condenser for Triethylene Glycol Dehydration. Membranes and Membrane Technologies, 4 №4 (2022) 242-250
  • D.O.Kalmykov, S.V.Makaev, G.S.Golubev, A.V.Volkov. Evaporation–Extraction Membrane Process for the Extraction of Lithium from Salt Lakes. Membranes and Membrane Technologies, 12 №4 (2022) 264-275 (in Russian)
  • D.O.Kalmykov, S.V.Makaev, G.S.Golubev, A.V.Volkov. Evaporation–Extraction Membrane Process for the Extraction of Lithium from Salt Lakes. Membranes and Membrane Technologies, 4 (2022) 232–241
  • G.Golubev, S.Sokolov, T.Rokhmanka, S.Makaev, I.Borisov, S.Khashirova, A.Volkov. High Efficiency Membranes Based on PTMSP and Hyper-Crosslinked Polystyrene for Toxic Volatile Compounds Removal from Wastewater. Polymers, 14 (2022) 2944
  • G.Golubev, V.Volkov, I.Borisov, A.Volkov. High free volume polymers for pervaporation. Current Opinion in Chemical Engineering, 36 (2022) 100788
  • G.Golubev, D.Bakhtin, S.Makaev, I.Borisov, A.Volkov. Hybrid Microporous Polymeric Materials with Outstanding Permeability and Increased Gas Transport Stability: PTMSP Aging Prevention by Sorption of the Polymerization Catalyst on HCPS. Polymers, 13 №12 (2021) 1922
  • S.V.Makaev, D.O.Kalmykov, G.S.Golubev, I.S.Eremeev, A.V.Volkov, T.L.Hoang, T.D.Nguyen. Modeling of film distillation with membrane condenser for treatment of reverse osmosis concentrate under vietnam tropical conditions. Membranes and Membrane Technologies, 11 №6 (2021) 1–14 (in Russian)
  • S.V.Makaev, D.O.Kalmykov, G.S.Golubev, I.S.Eremeev, A.V.Volkov, T.L.Hoang, T.D.Nguyen. Modeling of film distillation with membrane condenser for treatment of reverse osmosis concentrate under vietnam tropical conditions. Membranes and Membrane Technologies, 3 №6 (2021) 365-376
  • D.Kalmykov, S.Makaev, G.Golubev, I.Eremeev, V.Vasilevsky, J. Song, T.He, A.Volkov. Operation of Three-Stage Process of Lithium Recovery from Geothermal Brine: Simulation. Membranes, 11 №3 (2021) 175
  • G.Golubev, I.Eremeev, S.Makaev, M.Shalygin, V.Vasilevsky, T.He, E.Drioli, A.Volkov. Thin-film distillation coupled with membrane condenser for brine solutions concentration. Desalination, 503 (2021) 114956
  • G.S.Golubev, I.A.Podtynnikov, A.V.Balynin, I.L.Borisov. Triethylene Glycol Dehydration by Thermopervaporation. Key Engineering Materials, 869 (2020) 182-189
  • A.A.Yushkin, G.S.Golubev, I.A.Podtynnikov, I.L.Borisov, V.V.Volkov, A.V.Volkov. Separation of Mixtures of Polar and Nonpolar Organic Liquids by Pervaporation and Nanofiltration (Review). Petroleum Chemistry, 60 №11 (2020) 1317-1327
  • A.A.Yushkin, G.S.Golubev, I.A.Podtynnikov, I.L.Borisov, V.V.Volkov, A.V.Volkov. Separation of Mixtures of Polar and Nonpolar Organic Liquids by Pervaporation and Nanofiltration (Review). Petroleum Chemistry, 60 №6 (2020) 863-874 (in Russian)
  • D.O.Kalmykov, S.V.Makaev, G.S.Golubev, T.L.Hoang, Tr.D.Nguyen, A.V.Volkov. Simulation of Desalination of a Sodium Chloride Aqueous Solution by Membrane Distillation with a Porous Condenser. Membranes and Membrane Technologies, 2 №6 (2020) 407-416
  • D.O.Kalmykov, S.V.Makaev, G.S.Golubev, T.L.Hoang, Tr.D.Nguyen, A.V.Volkov. Simulation of Desalination of a Sodium Chloride Aqueous Solution by Membrane Distillation with a Porous Condenser. Membranes and Membrane Technologies, 10 №6 (2020) 436-446 (in Russian)
  • G.S.Golubev, I.L.Borisov, V.V.Volkov, A.V.Volkov. High-Performance Reinforced PTMSP Membranes for Thermopervaporation Removal of Alcohols from Aqueous Media. Membranes and Membrane Technologies, 2 №1 (2020) 45-53
  • G.S.Golubev, I.L.Borisov, V.V.Volkov, A.V.Volkov. High-Performance Reinforced PTMSP Membranes for Thermopervaporation Removal of Alcohols from Aqueous Media. Membranes and Membrane Technologies, 10 №1 (2020) 54-62 (in Russian)
  • V.Volkov, I.Borisov, G.Golubev, V.Vasilevsky, D.Matveev, G.Bondarenko, A.Volkov. Sorption-assisted thermopervaporation method for organics recovery from ABE fermentation broth. Journal of Chemical Technology & Biotechnology, 95 №1 (2020) 40-51
  • E.G.Novitsky, G.S.Golubev, E.A.Grushevenko, V.P.Vasilevsky, A.V.Volkov. Process of Concentrating of Highly Mineralized Waters in an Air-Gap Membrane Distiller. Membranes and Membrane Technologies, 9 №6 (2019) 445-450 (in Russian)
  • E.G.Novitsky, G.S.Golubev, E.A.Grushevenko, V.P.Vasilevsky, A.V.Volkov. Process of Concentrating of Highly Mineralized Waters in an Air-Gap Membrane Distiller. Membranes and Membrane Technologies, 1 №6 (2019) 381-385
  • G.S.Golubev, I.L.Borisov, A.V.Volkov, V.V.Volkov. Poly(trimethylsilylpropyne) Membranes for Removal of Alcohol Fermentation Products by Thermopervaporation with a Porous Condenser. Membranes and Membrane Technologies, 1 (№5) (2019) 331-339
  • G.S.Golubev, I.L.Borisov, A.V.Volkov, V.V.Volkov. Poly(trimethylsilylpropyne) Membranes for Removal of Alcohol Fermentation Products by Thermopervaporation with a Porous Condenser. Membranes and Membrane Technologies, 9 (№5) (2019) 387-396 (in Russian)
  • G.S.Golubev, I.L.Borisov, V.V.Volkov. Performance of Commercial and Laboratory Membranes for Recovering Bioethanol from Fermentation Broth by Thermopervaporation. Journal of Applied Chemistry, 91 №8 (2018) 1376-1382
  • G.S.Golubev, I.L.Borisov, V.V.Volkov. Thermopervaporational Removal of Isopropanol and Butanol from Aqueous Media with Using Membranes Based on Hydrophobic Polysiloxanes. Petroleum Chemistry, 58 №11 (2018) 975-982
  • G.S.Golubev, I.L.Borisov, V.V.Volkov. Thermopervaporational Removal of Isopropanol and Butanol from Aqueous Media with Using Membranes Based on Hydrophobic Polysiloxanes. Membranes and membrane technologies, 8 №5 (2018) 370-378 (in Russian)
  • I.L.Borisov, G.S.Golubev, E.V.Patrusheva, S.P.Sineokoy. Intensification of acetone-butanol-ethanol fermentation via products recovery: thermopervaporation assisted by phase separation. CET, 64 (2018) 43-48
  • E.A.Grushevenko, I.A.Podtynnikov, G.S.Golubev, V.V.Volkov, I.L.Borisov. Polyheptylmethylsiloxane - a novel material for removal of oxygenates from water by pervaporation. Petroleum Chemistry 58, 11 (2018) 941–948
  • E.A.Grushevenko, I.A.Podtynnikov, G.S.Golubev, V.V.Volkov, I.L.Borisov. Polyheptylmethylsiloxane - a novel material for removal of oxygenates from water by pervaporation, Membranes and membrane technologies, 8 №5 (2018) 334-342 (in Russian)
  • G.S.Golubev, I.L.Borisov, E.G.Litvinova, V.S.Khotimsky, D.S.Bakhtin, A.V.Pastukhov, V.A.Davankov, V.V.Volkov. Novel Hybrid Material Based on Polytrimethylsilylpropyne and Hypercrosslinked Polystyrene for Membrane Gas Separation and Thermopervaporation // Petroleum Chemistry, 57 №6 (2017) 498-510
  • G.S.Golubev, I.L.Borisov, E.G.Litvinova, V.S.Khotimsky, D.S.Bakhtin, A.V.Pastukhov, V.A.Davankov, V.V.Volkov. Novel Hybrid Material Based on PTMSP and Hypercrosslinked Polystyrene for Membrane Gas Separation and Thermopervaporation. Membranes and membrane technologies, 7, №3 (2017) 165-178 (in Russian)
  • I.L.Borisov, G.S.Golubev, V.P.Vasilevsky, A.V.Volkov, V.V.Volkov. Novel hybrid process for bio-butanol recovery: Thermopervaporation with porous condenser assisted by phase separation. Journal of Membrane Science 523 (2017) 291–300
  • A.V.Volkov, D.S.Bakhtin, L.A.Kulikov, M.V.Terenina, G.S.Golubev, G.N.Bondarenko, S.A.Legkov, G.A.Shandryuk, V.V.Volkov, V.S.Khotimskiy, A.A.Belogorlov, A.L.Maksimov, E.A.Karakhanov. Stabilization of gas transport properties of PTMSP with porous aromatic framework: Effect of annealing. J. Membr. Sci. 517 (2016) 80-90


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