[1]X. Li, C. Pu, X. Chen, F. Huang, H. Zheng, Study on frequency optimization and mechanism of ultrasonic waves assisting water flooding in low-permeability reservoirs[J]. Ultrasonics Sonochemistry, 2021, 70: 105291.(中科院一区Top)

[2]X. Li, L. Zheng, G. Li, J. Pu, T. Zhang, F. Huang, Enhanced oil recovery in tight reservoirs by ultrasonic-assisted CO2flooding: Experimental study and molecular dynamics simulation[J]. Fuel, 2024, 378: 132889.(中科院一区Top)

[3]X. Li, C. Pu, X. Chen, Improved foam stability through the combination of silica nanoparticle and thixotropic polymer: An experimental study[J]. Journal of Molecular Liquids, 2022, 346: 117153.(中科院二区Top,ESI高被引论文)

[4]X. Li, C. Pu, X. Chen, A novel foam system stabilized by hydroxylated multiwalled carbon nanotubes for enhanced oil recovery: Preparation, characterization and evaluation[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 632: 127804.(中科院二区)

[5]X. Li, C. Pu, Y. Bai, F. Huang, Effect of surfactant types on the foam stability of multiwalled carbon nanotube stabilized foam[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 648: 129389.(中科院二区)

[6]X. Li, C. Pu, H. Wei, F. Huang, Y. Bai, C. Zhang. Enhanced oil recovery in fractured low-permeability reservoirs by a novel gel system prepared by sustained-release crosslinker and water-soluble thixotropic polymer[J]. Geoenergy science and engineering, 2023, 222: 211424.(中科院二区Top)

[7]X. Li, X. Chen, Z. Xu, C. Pu, A Novel Foam Flooding for Enhanced Oil Recovery in Fractured Low-Permeability Reservoirs: Performance Evaluation and Mechanism Study, SPE Journal, 2022, 209623: 2408-2424.(中科院三区)

[8]X. Li, X. Wang, C. Pu, N. Khan, J. Pu, S. Kang, Y. Bai, K. Wang, J. Liu, Effect of a hydrophobically associating polymer on disproportionate permeability reduction to oil and water for sandstone reservoirs[J]. Desalination and Water Treatment, 2023, 293: 276-285.(中科院四区)

[9]X. Li, C. Pu, Z. Chen, C. Zhang, Evaluation of preformed particle gels and polymer gels for conformance control in heterogeneous sandstone reservoirs[C]. IOP Conference Series: Earth and Environmental Science, 2021.(国际会议)

[10]李旭,蒲春生,丁云鹏,刘静,张超,陈泽宇,高振东.纳米SiO2/触变性聚合物提高泡沫遇油稳定性机理[J].应用化工, 2022, 51(10): 2824-2828+2833.(中文核心)

[11]李旭,蒲春生,Nasir Khan,田晓玲,陈宁新.超声波辅助强氧化剂解除凝胶堵塞实验研究[J].应用化工, 2017, 46(11): 2126-2130.(中文核心)

[12] Y. Bai, C. Pu,X. Li, F. Huang, S. Liu, L. Liang, J. Liu, Performance evaluation and mechanism study of a functionalized silica nanofluid for enhanced oil recovery in carbonate reservoirs[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 652: 129939.(中科院二区)

[13] Y. Bai, C. Pu, S. Liu,X. Li, L. Liang, J. Liu, A novel amphiphilic Janus nano-silica for enhanced oil recovery in low-permeability reservoirs: An experimental study[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 637: 128279.(中科院二区)

[14] J. Pu, N. Zhang, Q. Liu, M. Lin, M. Luo,X. Li, J. Wu, Y. Yang, W. Yang,Temperature-Triggered Release of Chromium Chloride from Nanocapsules for Controlled Burst Release and Gelation of Hydrolyzed Polyacrylamide to Plug High-Permeability Channels[J]. SPE Journal, 2023, 28: 1230–1240.(中科院三区)

[15] J. Pu, M. Luo, K. Wang,X. Li, J. Wu, N. Zhang, Y. Zhao, M. Lu, Fabrication and Release Mechanism Study of a Nanocapsule Breaker for Controlling Degradation Rate of Insoluble Residue in Slickwater at Moderate-Temperature Reservoirs[J]. SPE Journal, 2024, 29: 973–984.(中科院三区)

[16] K. Wang, M. Luo, M. Li, S. Kang, X. Li, C. Pu, J. Liu. Optimization of Hydrolyzed Polyacrylamide/Chromium (III)-Acetate Gel-Plugging Process after Preflush Crosslinker in Fractured Extra-low Permeability Reservoir at Moderate Temperature[J]. SPE Journal, 2023, 28: 683–696.(中科院三区)

[17] S. Kang, C. Pu, K. Wang,X. Li, N. Zhang, D. Yan, F. Huang, Investigation of the Oil-Soluble Particulate Temporary Plugging Agent-Assisted Water Huff ‘n’ Puff Enhanced Oil Recovery in Tight Oil Reservoirs[J]. SPE Journal, 2023, 28: 2346–2364.(中科院三区)

[18]陈泽宇,刘静,蒲春生,李旭,白云.表面活性剂分散多壁碳纳米管机理及性能评价[J].精细化工, 2022, 39(02): 269-275+410.(EI收录)

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[1]X. Li, C. Pu, X. Chen, F. Huang, H. Zheng, Study on frequency optimization and mechanism of ultrasonic waves assisting water flooding in low-permeability reservoirs[J]. Ultrasonics Sonochemistry, 2021, 70: 105291.(中科院一区Top)

[2]X. Li, L. Zheng, G. Li, J. Pu, T. Zhang, F. Huang, Enhanced oil recovery in tight reservoirs by ultrasonic-assisted CO2flooding: Experimental study and molecular dynamics simulation[J]. Fuel, 2024, 378: 132889.(中科院一区Top)

[3]X. Li, C. Pu, X. Chen, Improved foam stability through the combination of silica nanoparticle and thixotropic polymer: An experimental study[J]. Journal of Molecular Liquids, 2022, 346: 117153.(中科院二区Top,ESI高被引论文)

[4]X. Li, C. Pu, X. Chen, A novel foam system stabilized by hydroxylated multiwalled carbon nanotubes for enhanced oil recovery: Preparation, characterization and evaluation[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 632: 127804.(中科院二区)

[5]X. Li, C. Pu, Y. Bai, F. Huang, Effect of surfactant types on the foam stability of multiwalled carbon nanotube stabilized foam[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 648: 129389.(中科院二区)

[6]X. Li, C. Pu, H. Wei, F. Huang, Y. Bai, C. Zhang. Enhanced oil recovery in fractured low-permeability reservoirs by a novel gel system prepared by sustained-release crosslinker and water-soluble thixotropic polymer[J]. Geoenergy science and engineering, 2023, 222: 211424.(中科院二区Top)

[7]X. Li, X. Chen, Z. Xu, C. Pu, A Novel Foam Flooding for Enhanced Oil Recovery in Fractured Low-Permeability Reservoirs: Performance Evaluation and Mechanism Study, SPE Journal, 2022, 209623: 2408-2424.(中科院三区)

[8]X. Li, X. Wang, C. Pu, N. Khan, J. Pu, S. Kang, Y. Bai, K. Wang, J. Liu, Effect of a hydrophobically associating polymer on disproportionate permeability reduction to oil and water for sandstone reservoirs[J]. Desalination and Water Treatment, 2023, 293: 276-285.(中科院四区)

[9]X. Li, C. Pu, Z. Chen, C. Zhang, Evaluation of preformed particle gels and polymer gels for conformance control in heterogeneous sandstone reservoirs[C]. IOP Conference Series: Earth and Environmental Science, 2021.(国际会议)

[10]李旭,蒲春生,丁云鹏,刘静,张超,陈泽宇,高振东.纳米SiO2/触变性聚合物提高泡沫遇油稳定性机理[J].应用化工, 2022, 51(10): 2824-2828+2833.(中文核心)

[11]李旭,蒲春生,Nasir Khan,田晓玲,陈宁新.超声波辅助强氧化剂解除凝胶堵塞实验研究[J].应用化工, 2017, 46(11): 2126-2130.(中文核心)

[12] Y. Bai, C. Pu,X. Li, F. Huang, S. Liu, L. Liang, J. Liu, Performance evaluation and mechanism study of a functionalized silica nanofluid for enhanced oil recovery in carbonate reservoirs[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 652: 129939.(中科院二区)

[13] Y. Bai, C. Pu, S. Liu,X. Li, L. Liang, J. Liu, A novel amphiphilic Janus nano-silica for enhanced oil recovery in low-permeability reservoirs: An experimental study[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022, 637: 128279.(中科院二区)

[14] J. Pu, N. Zhang, Q. Liu, M. Lin, M. Luo,X. Li, J. Wu, Y. Yang, W. Yang,Temperature-Triggered Release of Chromium Chloride from Nanocapsules for Controlled Burst Release and Gelation of Hydrolyzed Polyacrylamide to Plug High-Permeability Channels[J]. SPE Journal, 2023, 28: 1230–1240.(中科院三区)

[15] J. Pu, M. Luo, K. Wang,X. Li, J. Wu, N. Zhang, Y. Zhao, M. Lu, Fabrication and Release Mechanism Study of a Nanocapsule Breaker for Controlling Degradation Rate of Insoluble Residue in Slickwater at Moderate-Temperature Reservoirs[J]. SPE Journal, 2024, 29: 973–984.(中科院三区)

[16] K. Wang, M. Luo, M. Li, S. Kang, X. Li, C. Pu, J. Liu. Optimization of Hydrolyzed Polyacrylamide/Chromium (III)-Acetate Gel-Plugging Process after Preflush Crosslinker in Fractured Extra-low Permeability Reservoir at Moderate Temperature[J]. SPE Journal, 2023, 28: 683–696.(中科院三区)

[17] S. Kang, C. Pu, K. Wang,X. Li, N. Zhang, D. Yan, F. Huang, Investigation of the Oil-Soluble Particulate Temporary Plugging Agent-Assisted Water Huff ‘n’ Puff Enhanced Oil Recovery in Tight Oil Reservoirs[J]. SPE Journal, 2023, 28: 2346–2364.(中科院三区)

[18]陈泽宇,刘静,蒲春生,李旭,白云.表面活性剂分散多壁碳纳米管机理及性能评价[J].精细化工, 2022, 39(02): 269-275+410.(EI收录)



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