Yuan Chengdong . Результативность работы. Персональная страница сотрудника КФУ. Казанский (Приволжский) федеральный университет.
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Yuan Chengdong (архив)
Юань Чэнгдонг
2023
Saifullin E. R. et al. Coreflood Testing of Gas-Blocking Agents: Selectivity in High-Heterogeneity Reservoirs and Efficiency in Low-Temperature Conditions //Energy & Fuels. – 2023. – Т. 37. – №. 16. – С. 11720-11729.
2022
Zinnatullin A.L. Fundamental insight into pyrolysis and oxidation process of ferric (III) stearate / A.L. Zinnatullin, C. Yuan, D.A. Emelianov, M.A. Varfolomeev, F.G. Vagizov // Journal of Analytical and Applied Pyrolysis. – 2022. – Vol. 161. 105367.
Saifullin E.R, Zhanbossynova S, Zharkov D.A, Yuan C, Varfolomeev M.A, Zvada M, Laboratory Studies For Design of a Foam Pilot For Reducing Gas Channeling From Gas Cap in Production Well in Messoyakhskoye Field //SPE Reservoir Evaluation and Engineering – OnePetro, 2022.
Djimasbe R., Oil dispersed nickel-based catalyst for catalytic upgrading of heavy oil using supercritical water / Djimasbe R., Varfolomeev M.A., Al-Muntaser A.A., Yuan C., Feoktistov D.A., Suwaid M.A., Kirgizov A.J., Davletshin R.R., Zinnatullin A.L., Fatou S.D., Galeev R.I., Rakhmatullin I.Z., Kwofie M., Klochkov V.V., Prochukhan K.Y. // Fuel. - 2022. - Vol. 313. - P. 1122702.
Malahov A.O., Saifullin E.R., Varfolomeev M.A., Nazarychev S.A., Mustafin A.Z., Yuan C., Novikov I.P., Zharkov D.A., Sagirov R.N., Kadyrov R.I. Screening of surfactants for flooding at high-mineralization conditions: two production zones of carbonate reservoir //Energies. ? 2022. ? Т. 15. ? №. 2. ? С. 411.
Al-Mishaal, Omar F., et al. «Octahedral Cluster Complex of Molybdenum as Oil-Soluble Catalyst for Improving In Situ Upgrading of Heavy Crude Oil: Synthesis and Application.« Catalysts 12.10 (2022): 1125.
catalysts_12_01125_v2.pdf
Varfolomeev, M., Koochi, M.R., Yuan, C., Khayrtdinov, R., Mustafin, A., Glukhov, M., Kadyrov, R., Sudakov, V., Usmanov, S., 2022. Feasibility of Ion-Modified Water for Low Salinity Water Flooding: A Case Study for Ultra-High-Salinity Carbonate Reservoir in Akanskoe Oilfield Tatarstan, Russia, in: Society of Petroleum Engineers - SPE Conference at Oman Petroleum and Energy Show, OPES 2022. SPE. https://doi.org/10.2118/200046-MS
Saifullin E.R., Putintseva P.O., Sagirov R.N., Varfolomeev M.A., Yuan C., Pavelyev, R.S., Nazarychev S.A., Malahov A.O., Akimushkina L., Zharkov D.A., Bykov A.O., Mirzakimov U. Novel Nonylphenol Polyethoxylated Based Surfactants for Enhanced Oil Recovery for High-Mineralization Carbonate Reservoir //Energies. ? 2022. ? Т. 15. ? №. 3. ? С. 961.
Varfolomeev, Mikhail, Rezaei Koochi, Mojtaba, Yuan, Chengdong, Khayrtdinov, Ruslan, Mustafin, Aidar, Glukhov, Mikhail, Kadyrov, Rail, Sudakov, Vladislav, and Sergey Usmanov. «Feasibility of Ion-Modified Water for Low Salinity Water Flooding: A Case Study for Ultra-High-Salinity Carbonate Reservoir in Akanskoe Oilfield Tatarstan, Russia.« Paper presented at the SPE Conference at Oman Petroleum & Energy Show, Muscat, Oman, March 2022. doi: https://doi.org/10.2118/200046-MS
2021
Al-Muntaser A.A, Varfolomeev M.A, Suwaid M.A, Hydrogen donating capacity of water in catalytic and non-catalytic aquathermolysis of extra-heavy oil: Deuterium tracing study//Fuel. - 2021. - Vol.283, Is.. - Art. № 118957.
Mehrabi-Kalajahi S, Varfolomeev M.A, Yuan C, Improving heavy oil oxidation performance by oil-dispersed CoFe
2
O
4
nanoparticles in In-situ combustion process for enhanced oil recovery//Fuel. - 2021. - Vol.285, Is.. - Art. № 119216.
Yuan C, Emelianov D.A, Varfolomeev M.A, Mechanistic and kinetic insight into catalytic oxidation process of heavy oil in in-situ combustion process using copper (?) stearate as oil soluble catalyst//Fuel. - 2021. - Vol.284, Is.. - Art. № 118981.
Djimasbe R, Varfolomeev M.A, Al-Muntaser A.A, Deep insights into heavy oil upgrading using supercritical water by a comprehensive analysis of GC, GC-MS, NMR, and SEM-EDX with the aid of EPR as a complementary technical analysis//ACS Omega. - 2021. - Vol., Is.. - .
Saifullin E.R., Zhanbossynova S., Zharkov D.A., Pavelyev R.S., Yuan C., Varfolomeev M.A., Mirzakimov U.Zh., Ivanov S.Yu., Sitnov S.A. Nonylphenol ethoxylate surfactants modified by carboxyl groups for foam EOR at high-salinity conditions //Energies. ? 2021. ? Т. 14. ? №. 24. ? С. 8205.
Mehrabi-Kalajahi Seyedsaeed, Varfolomeev Mikhail A., Yuan Chengdong, Oil-Dispersed alpha-Fe2O3 Nanoparticles as a Catalyst for Improving Heavy Oil Oxidation//ENERGY & FUELS. - 2021. - Vol.35, Is.13. - P.10498-10511.
Varfolomeev M.A.a, b,Yuan C.a, b,Bolotov A.V.a,Minkhanov I.F.a,Mehrabi-Kalajahi S.a, b,Saifullin E.R.a, b,Marvanov M.M.a,Baygildin E.R.a,Sabiryanov R.M.a,Rojas A.a,Emelianov D.A.b,Al-Muntaser A.A.a, Bulat G. Ganiev c, Azat T. Zaripov d, Anton N. Beregovoi d, Damir K. Shaihutdinov d. Effect of copper stearate as catalysts on the performance of in-situ combustion process for heavy oil recovery and upgrading. Journal of Petroleum Science and Engineering Volume 207, December 2021, 109125
Seyedsaeed M. Response to Comment on Oil-Dispersed α-Fe2O3 Nanoparticles as a Catalyst for Improving Heavy Oil Oxidation / Seyedsaeed Mehrabi-Kalajahi, Mikhail A. Varfolomeev, Chengdong Yuan, Nikolay O. Rodionov, Almaz L. Zinnatullin, Farit G. Vagizov, Yuri N. Osin // Energy&Fuels. – 2021. - https://doi.org/10.1021/acs.energyfuels.1c03543
F_Energy_Fuels_Response_to_Comment_on_Oil_Dispersed.pdf
Kuzina D.M, Yuan Ch, Nurgaliev D.K, EFFECT OF IN-SITU COMBUSTION PROCESS ON THE MAGNETIC PROPERTIES AND COMPOSITION OF ROCK //SOCAR Proceedings. - 2021. - Vol.2021, Is.. - P.57-64.
F_057_064_OGP2021SI200568.pdf
Pu W.-F, Du D.-J, Fan H.-C, CO
2
-responsive preformed gel particles with interpenetrating networks for controlling CO
2
breakthrough in tight reservoirs//Colloids and Surfaces A: Physicochemical and Engineering Aspects. - 2021. - Vol.613, Is.. - Art. № 126065.
2020
Ariskina K.A, Abaas M, Yuan C, Effect of calcite and dolomite on crude oil combustion characterized by TG-FTIR//Journal of Petroleum Science and Engineering. - 2020. - Vol.184, Is.. - Art. № 106550.
A.A. Al-Muntaser, M.A. Varfolomeev, M.A. Suwaid, C. Yuan, A.E. Chemodanov, D.A. Feoktistov, I.Z. Rakhmatullin, M. Abbas, E. Domínguez-Álvarez, A.A. Akhmadiyarov, V.V. Klochkov, M.I. Amerkhanov. Hydrothermal upgrading of heavy oil in the presence of water at sub-critical, near-critical and supercritical conditions, Journal of Petroleum Science and Engineering, 2020, 184, 106592
Yuan C, Sadikov K, Varfolomeev M, Low-temperature combustion behavior of crude oils in porous media under air flow condition for in-situ combustion (ISC) process//Fuel. - 2020. - Vol.259, Is.. - Art. № 116293.
Пат. 109030558 Китай, МПК G01N 25/22. Устройство и способ контроля теплового эффекта химических реакций в пористых средах / К.Г. Садиков, Ч. Юань, М.А. Варфоломеев. № 201810822811.8; заявл. 25.07.2018, опубл. 09.04.2020
F_CN109030558A___19968_PMTEC.pdf
Varfolomeev, M. A., Ziniukov, R. A., Yuan, C., Khairtdinov, R. K., Sitnov, S. A., Sudakov, V. A., … Glukhov, M. S. (2020, October 26). Optimization of Carbonate Heavy Oil Reservoir Development Using Surfactant Flooding: from Laboratory Screening to Pilot Test. Society of Petroleum Engineers. doi:10.2118/201905-MS
Ariskina K.A, Yuan C, Abaas M, Catalytic effect of clay rocks as natural catalysts on the combustion of heavy oil//Applied Clay Science. - 2020. - Vol.193, Is.. - Art. № 105662.
Suwaid M.A, Varfolomeev M.A, Al-muntaser A.A, Yuan C., Starshinova V.L., Zinnatullin A.L., Vagizov F.G., Rakhmatullin I.Z., Emelianov D.A., Chemodanov A.E. In-situ catalytic upgrading of heavy oil using oil-soluble transition metal-based catalysts, Fuel - 2020, 281, Art. № 118753.
Tverdov Ilya, Khafizov Nail R., Madzhidov Timur I., Varfolomeev Mikhail A., Chengdong Yuan, Kadkin Oleg N. Theoretical Insights into the Catalytic Effect of Transition-Metal Ions on the Aquathermal Degradation of Sulfur-Containing Heavy Oil: A DFT Study of Cyclohexyl Phenyl Sulfide Cleavage//ACS OMEGA. - 2020. - Vol.5, Is.31. - P.19589-19597.
Yuan, C., Varfolomeev, M. A., & Khachatrian, A. A. (2020). Interaction between aromatics and n-alkane for in-situ combustion process. Journal of Petroleum Science and Engineering, 187, 106770.
2019
Yuan, C. Copper stearate as a catalyst for improving the oxidation performance of heavy oil in in-situ combustion process.Yuan, C., Varfolomeev, M.A., Emelianov, D.A., Suwaid, M.A., Khachatrian, A.A., Starshinova, V.L., Vakhitov, I.R., Al-Muntaser, A.A. Applied Catalysis A: General
Yuan C, Emelianov D.A, Varfolomeev M.A, Comparison of oxidation behavior of linear and branched alkanes//Fuel Processing Technology. - 2019. - Vol.188, Is.. - P.203-211.
Comparison of oxidation behavior of linear and branched alkanes
Effect of calcite on crude oil combustion characterized by high-pressure differential scanning calorimetry (HP-DSC)
Al-Muntaser A.A, Varfolomeev M.A, Suwaid M.A, Hydrothermal upgrading of heavy oil in the presence of water at sub-critical, near-critical and supercritical conditions//Journal of Petroleum Science and Engineering. - 2019. - Vol., Is.. - Art. № 106592.
Low-temperature oxidation of light and heavy oils via thermal analysis: Kinetic analysis and temperature zone division
Oxidation Behavior of Light Crude Oil and Its SARA Fractions Characterized by TG and DSC Techniques: Differences and Connections
Thermal pyrolysis behaivor of crude oil by thermogravimetry-mass spectrum analysis (TG-MS) and differential scanning calorimeter (DSC)
Micro-scale preformed particle gel/surfactant eor process for high temperature and hard brine reservoir
Thermal Behavior and Kinetic Triplets of Heavy Crude Oil and Its SARA Fractions during Combustion by High-Pressure Differential Scanning Calorimetry
2018
Yuan C, Varfolomeev M.A, Emelianov D.A, Oxidation Behavior of Light Crude Oil and Its SARA Fractions Characterized by TG and DSC Techniques: Differences and Connections//Energy and Fuels. - 2018. - Vol.32, Is.1. - P.801-808.
Using EPR technique for monitoring of ISC processes and reservoirs temperature in enhanced oil recovery
EPR as a complimentary tool for the analysis of low-temperature oxidation reactions of crude oils
Yuan C, Emelianov D.A, Varfolomeev M.A., Oxidation Behavior and Kinetics of Light, Medium, and Heavy Crude Oils Characterized by Thermogravimetry Coupled with Fourier Transform Infrared Spectroscopy//Energy and Fuels. - 2018. - Vol.32, Is.4. - P.5571-5580.
Mehrabi-Kalajahi S.S, Varfolomeev M.A, Yuan C, EPR as a complementary tool for the analysis of low-temperature oxidation reactions of crude oils//Journal of Petroleum Science and Engineering. - 2018. - Vol.169, Is.. - P.673-682.
Al-Muntaser A. A. Coke formation through oil upgrading of heavy oil by superheated steam / A.A. Al-Muntaser, C. Yuan, M.A. Suwaid, M.A. Varfolomeev // International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM. ? 2018. ? V. 18 (1.4). - P. 335-342.
Comprehensive investigations into low temperature oxidation of heavy crude oil
Investigation into the migration of polymer microspheres (PMs) in porous media: Implications for profile control and oil displacement
Effect of the crude oil composition on the oxidation behavior by high-pressure differential scanning calorimetry (HP-DSC)
Catalytic aquathermolysis process for upgrading of heavy crude oil
Coke formation through oil upgrading of heavy oil by superheated steam
Effect of rock minerals on the crude oil combustion characterized by thermogravimetry coupled with fourier transform infrared spectroscopy (TG-FTIR)
A new, fast, and efficient method for evaluating the influence of catalysts on in-situ combustion process for heavy oil recovery
Mutual effects of sara fractions on the oxidation behavior characterized by differential scanning calorimeter (DSC)
Yuan, C.,IMPROVING THE OXIDATION BEHAVIOR OF HEAVY OIL USING COPPER STEARATE AS A CATALYST. Yuan, C. Varfolomeev, M.A., Suwaid, M.A., Emelianov, D.A. IMPROVING THE OXIDATION BEHAVIOR OF HEAVY OIL USING COPPER STEARATE AS A CATALYST
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