Carbon dioxide-assisted aqueous pyrolysis of heavy oil in the presence of oil-soluble catalysts and sodium nanoparticles

被引:0
作者
Mirzayev, Oybek [1 ]
Aliev, Firdavs [1 ]
Sitnov, Sergei [1 ]
Kholmurodov, Temurali [1 ]
Mukhamatdinova, Rezeda [1 ]
Ismael, Mustafa [1 ]
Trubitsina, Sofya [1 ]
Al-Qaz, Abdulvahhab Mohammed [1 ]
Vakhin, Alexey [1 ]
机构
[1] Kazan Fed Univ, Inst Geol & Petr Technol, Kazan 420008, Russia
关键词
Heavy oil; Catalysts; Alkali metals; Aqueous pyrolysis; Aquathermolysis; Hybrid EOR; CO2; hydrogenation; CO2; INJECTION; BATI-RAMAN; HYDROGENATION; AQUATHERMOLYSIS; TEMPERATURE; REACTIVITY; CONVERSION; BITUMEN; FIELD; GAS;
D O I
10.1016/j.jaap.2025.107061
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The CO2-assisted aqueous pyrolysis of heavy oil in the reservoir formations is one of the most promising methods to enhance heavy oil recovery and utilize carbon dioxide into value-added products. The study examines the performance of the oil-soluble catalysts and dispersed sodium nanoparticles on the upgrading degree of heavy oil and carbon dioxide hydrogenation degree. Various analytical tools such as SARA analysis, viscosity measurements, elemental analysis, gas chromatography, spectroscopy-based analysis methods (EPR, GC-MS and FT-IR analysis) were employed to evaluate the upgrading efficiency of the synthesized catalysts. The relative content of the evolved CO2 in the presence of Fe-Na nanoparticles was reduced from 78 % (blank) to 31 %, while the sum of C1-C5 n-alkanes was increased from 9.2 % to 41.6 %. The Ni-Na nanoparticles exhibited high activity on destructive hydrogenation of resins and asphaltenes such that reduced the mass ratio of heavy fragments by 35 % and increased the mass content of light fractions by 21 %. The CO2-assisted aqueous pyrolysis of heavy oil in the presence of sodium-promoted transition metal oxides and sulfides contributed to the viscosity reduction by 89 %. Taken together, we have found a cutting-edge solution for carbon dioxide utilization and obtained comprehensive experimental results for upgrading of heavy oil in-situ.
引用
收藏
页数:14
相关论文
共 83 条
[71]  
Vakhin A. V., 2021, SPE RUSS PETR TECHN
[72]   Catalytic activity of bimetallic nanoparticles based on iron and nickel sulfides for hydrogenolysis of heavy oil in case of Boca de Jaruco reservoir [J].
Vakhin, Alexey V. ;
Aliev, Firdavs A. ;
Mukhamatdinov, Irek I. ;
Sitnov, Sergey A. ;
Pyataev, Andrew, V ;
Kudryashov, Sergey I. ;
Afanasiev, Igor S. ;
Solovev, Aleksey, V ;
Sansiev, Georgi, V ;
Antonenko, Dmitry A. ;
Dubrovin, Kirill A. ;
Simakov, Iaroslav O. ;
Sharifullin, Andrey, V ;
Nurgaliev, Danis K. .
MOLECULAR CATALYSIS, 2023, 546
[73]   Extra-Heavy Oil Aquathermolysis Using Nickel-Based Catalyst: Some Aspects of In-Situ Transformation of Catalyst Precursor [J].
Vakhin, Alexey V. ;
Aliev, Firdavs A. ;
Mukhamatdinov, Irek I. ;
Sitnov, Sergey A. ;
Kudryashov, Sergey I. ;
Afanasiev, Igor S. ;
Petrashov, Oleg V. ;
Nurgaliev, Danis K. .
CATALYSTS, 2021, 11 (02) :1-22
[74]   High-frequency EPR study of crude oils [J].
Volodin, M. A. ;
Mamin, G. V. ;
Izotov, V. V. ;
Orlinskii, S. B. .
XVI INTERNATIONAL YOUTH SCIENTIFIC SCHOOL ACTUAL PROBLEMS OF MAGNETIC RESONANCE AND ITS APPLICATIONS, 2013, 478
[75]   Three-dimensional physical simulation experiment study on carbon dioxide and dissolver assisted horizontal well steam stimulation in super heavy oil reservoirs [J].
Wang C. ;
Liu H. ;
Wang J. ;
Wu Z. ;
Wang L. .
Journal of Petroleum Exploration and Production Technology, 2016, 6 (04) :825-834
[76]   Recent advances in carbon dioxide hydrogenation to produce olefins and aromatics [J].
Wang, Dong ;
Xie, Zhenhua ;
Porosoff, Marc D. ;
Chen, Jingguang G. .
CHEM, 2021, 7 (09) :2277-2311
[77]   Active Site Dependent Reaction Mechanism over Ru/CeO2 Catalyst toward CO2 Methanation [J].
Wang, Fei ;
He, Shan ;
Chen, Hao ;
Wang, Bin ;
Zheng, Lirong ;
Wei, Min ;
Evans, David G. ;
Duan, Xue .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2016, 138 (19) :6298-6305
[78]   ZrO2-MoO3/modified lotus stem biochar catalysts for catalytic aquathermolysis of heavy oil at low-temperature [J].
Wang, Yiya ;
Lin, Riyi ;
Zhang, Liqiang ;
Han, Xinlu ;
Li, Jinyu ;
Huang, Chenxing ;
Dong, Qiwei ;
Chen, Pengyu ;
Li, Huanan ;
Wang, Xinwei .
FUEL, 2024, 357
[79]   Directly converting CO2 into a gasoline fuel [J].
Wei, Jian ;
Ge, Qingjie ;
Yao, Ruwei ;
Wen, Zhiyong ;
Fang, Chuanyan ;
Guo, Lisheng ;
Xu, Hengyong ;
Sun, Jian .
NATURE COMMUNICATIONS, 2017, 8
[80]   New insights into the effect of sodium on Fe3O4-based nanocatalysts for CO2 hydrogenation to light olefins [J].
Wei, Jian ;
Sun, Jian ;
Wen, Zhiyong ;
Fang, Chuanyan ;
Ge, Qingjie ;
Xu, Hengyong .
CATALYSIS SCIENCE & TECHNOLOGY, 2016, 6 (13) :4786-4793