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Original Articles

The Kinetic Analysis of Oxidized Oil During the High Pressure Air Injection by Thermal Kinetic Analysis

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Jie-Xiang Wang, Liang-Liang Wang, Teng-Fei Wang & Xiao-Qiang Peng. (2020) Effects of SARA fractions on pyrolysis behavior and kinetics of heavy crude oil. Petroleum Science and Technology 38:20, pages 945-954.
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Qin Guowei, Wang Yaling, Dai Xu, Qin Wenlong, Wu Mei & Zheng Yanzhao. (2019) Influence of clay minerals on oxidation reaction of light crude oil. Petroleum Science and Technology 37:5, pages 566-572.
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Lei Zhang, Jing Liu, Chunsheng Pu, Cheng Jing & Liming Zheng. (2017) Influence of ferrous iron on the oxidation of crude oil at a low temperature. Petroleum Science and Technology 35:5, pages 501-506.
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Peng-Gang Liu, Wan-Fen Pu, Yi-Bo Li, Ming-Deng Tang, Fei Gu, Jun-Feng Wang & Wen-Hao Song. (2016) Low-temperature isothermal oxidation of crude oil. Petroleum Science and Technology 34:9, pages 838-844.
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Wan-Fen Pu, Peng-Gang Liu, Yi-Bo Li & Zhe-Zhi Liu. (2016) Sensitivity study on thermal behavior and kinetics of crude oil using thermal analysis techniques. Petroleum Science and Technology 34:1, pages 24-30.
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Y.-B. Li, L. Wang, W.-F Pu, F.-Y. Jin, Y.-F. Chen, B.-S. Sun, D. Li & F.-Q. Zhao. (2015) The In Situ Profile Modification Effect of Deposited Coke in Carbonate Reservoirs. Petroleum Science and Technology 33:19, pages 1685-1690.
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W.-F. Pu, P.-G. Liu, H. Jia, S. Zhao, D.-J. Du, S. Wang, B.-S. Sun & Y.-F. Chen. (2015) Comparative Study of Light and Heavy Oils Oxidation Using Thermal Analysis Methods. Petroleum Science and Technology 33:13-14, pages 1357-1365.
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Articles from other publishers (8)

Chengdong Yuan, Mikhail A. Varfolomeev, Mustafa V. Kok, Danis K. Nurgaliev & Airat H. Gabbasov. 2023. Catalytic In‐Situ Upgrading of Heavy and Extra‐Heavy Crude Oils. Catalytic In‐Situ Upgrading of Heavy and Extra‐Heavy Crude Oils 153 167 .
Zhongfu Cheng, Tengfei Wang, Zongxian Bai, Liangliang Wang, Chengdong Yuan, Zhenhui Zhao & Wei Song. (2023) A numerical simulation investigation on low permeability reservoirs air flooding: Oxidation reaction models and factors. Geoenergy Science and Engineering 223, pages 211506.
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Chengdong Yuan, Wan-fen Pu, Mohamed Amine Ifticene, Shuai Zhao & Mikhail A. Varfolomeev. (2022) Crude Oil Oxidation in an Air Injection Based Enhanced Oil Recovery Process: Chemical Reaction Mechanism and Catalysis. Energy & Fuels 36:10, pages 5209-5227.
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Ping Yue, Siyuan Huang, Fancheng Zeng, James J. Sheng & Qi Jiang. (2020) Experimental and Mechanism Study on Crude Oil Spontaneous Ignition during the Air Injection Process. Energy & Fuels 34:6, pages 7076-7084.
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Enoc Basilio & Tayfun Babadagli. (2020) Testing the injection of air with methane as a new approach to reduce the cost of cold heavy oil recovery: An experimental analysis to determine optimal application conditions. Fuel 265, pages 116954.
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Wan-fen Pu, Xiao-long Gong, Ya-fei Chen, Xue-li Liu, Jian Hui, Chen Guo & Mikhail A. Varfolomeev. (2019) Oxidation kinetic evaluation of the low temperature oxidized products of Tahe heavy oil characterized by the distributed activation energy model. Journal of Petroleum Science and Engineering 181, pages 106155.
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Ya-fei Chen, Wan-fen Pu, Xue-li Liu, Yi-bo Li, Mikhail A. Varfolomeev & Jian Hui. (2019) A preliminary feasibility analysis of in situ combustion in a deep fractured-cave carbonate heavy oil reservoir. Journal of Petroleum Science and Engineering 174, pages 446-455.
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Cheng Fan, Cheng Zan, Qiang Zhang, Lin Shi, Qiangsheng Hao, Hang Jiang & Fei Wei. (2015) Air Injection for Enhanced Oil Recovery: In Situ Monitoring the Low-Temperature Oxidation of Oil through Thermogravimetry/Differential Scanning Calorimetry and Pressure Differential Scanning Calorimetry . Industrial & Engineering Chemistry Research 54:26, pages 6634-6640.
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