166
Views
4
CrossRef citations to date
0
Altmetric
Research Articles

Investigation of the correlation between molecular structures with high-temperature and salt resistance for acrylamides polymer in drilling fluid

, , , , , & show all
Pages 1364-1372 | Received 06 Nov 2022, Accepted 02 May 2023, Published online: 24 May 2023

Reference

  • Liu, J.-P.; Zhang, X.-F.; Zhang, W.-C.; Lv, K.-H.; Bai, Y.-R.; Wang, J.-T.; Huang, X.-B.; Jin, J.-F.; Sun, J.-S. Carbon Nanotube Enhanced Water-Based Drilling Fluid for High Temperature and High Salinity Deep Resource Development. Pet. Sci. 2022, 19, 916–926. DOI: 10.1016/j.petsci.2021.09.045.
  • Yu, H.; Rui, Z.; Chen, Z.; Lu, X.; Yang, Z.; Liu, J.; Qu, X.; Patil, S.; Ling, K.; Lu, J.; et al. Feasibility Study of Improved Unconventional Reservoir Performance with Carbonated Water and Surfactant. Energy 2019, 182, 135–147. DOI: 10.1016/j.energy.2019.06.024.
  • Jin, J.; Wang, Y.; Wang, K.; Ren, J.; Bai, B.; Dai, C. The Effect of Fluorosurfactant-Modified Nano-Silica on the Gas-Wetting Alteration of Sandstone in a CH4 -Liquid-Core System. Fuel 2016, 178, 163–171. DOI: 10.1016/j.fuel.2016.03.040.
  • Jin, J.; Sun, J.; Rong, K.; Lv, K.; Nguyen, T. A. H.; Wang, R.; Huang, X.; Bai, Y.; Liu, J.; Wang, J. Gas-Wetting Alteration by Fluorochemicals and Its Application for Enhancing Gas Recovery in Gas-Condensate Reservoirs: A Review. Energies 2020, 13, 4591. DOI: 10.3390/en13184591.
  • Fu, L.; Liao, K.; Ge, J.; Huang, W.; Chen, L.; Sun, X.; Zhang, S. Study on the Damage and Control Method of Fracturing Fluid to Tight Reservoir Matrix. J. Nat. Gas Sci. Eng. 2020, 82, 103464. DOI: 10.1016/j.jngse.2020.103464.
  • Babaei, M.; Nick, H. M. Performance of Low-Enthalpy Geothermal Systems: Interplay of Spatially Correlated Heterogeneity and Well-Doublet Spacings. Appl. Energy 2019, 253, 113569. DOI: 10.1016/j.apenergy.2019.113569.
  • Jin, J.; Wang, Y.; Nguyen, T. A. H.; Bai, B.; Ding, W.; Bao, M. Morphology and Surface Chemistry of Gas-Wetting Nanoparticles and Their Effect on the Liquid Menisci in Porous Media. Ind. Eng. Chem. Res. 2019, 58, 6747–6755. DOI: 10.1021/acs.iecr.8b05525.
  • Vedachalam, N.; Ramesh, S.; Srinivasalu, S.; Rajendran, G.; Ramadass, G. A.; Atmanand, M. A. Assessment of Methane Gas Production from Indian Gas Hydrate Petroleum Systems. Appl. Energy 2016, 168, 649–660. DOI: 10.1016/j.apenergy.2016.01.117.
  • Aftab, A.; Ismail, A. R.; Ibupoto, Z. H.; Akeiber, H.; Malghani, M. G. K. Nanoparticles Based Drilling Muds a Solution to Drill Elevated Temperature Wells: A Review. Renew. Sustain. Energy Rev. 2017, 76, 1301–1313. DOI: 10.1016/j.rser.2017.03.050.
  • Salami, O. T.; Plank, J. Preparation and Properties of a Dispersing Fluid Loss Additive Based on Humic Acid Graft Copolymer Suitable for Cementing High Temperature (200 °C) Oil Wells. J. Appl. Polym. Sci. 2013, 129, 2544–2553. DOI: 10.1002/app.38980.
  • Tang, Y.; Hou, C.; He, Y.; Wang, Y.; Chen, Y.; Rui, Z. Review on Pore Structure Characterization and Microscopic Flow Mechanism of CO2 Flooding in Porous Media. Energy Technol. 2021, 9, 2000787. DOI: 10.1002/ente.202000787.
  • Wu, B.; Zhang, X.; Jeffrey, R. G. A Model for Downhole Fluid and Rock Temperature Prediction during Circulation. Geothermics 2014, 50, 202–212. DOI: 10.1016/j.geothermics.2013.10.004.
  • Kazemi-Beydokhti, A.; Hajiabadi, S. H. Rheological Investigation of Smart Polymer/Carbon Nanotube Complex on Properties of Water-Based Drilling Fluids. Colloids Surf. A 2018, 556, 23–29. DOI: 10.1016/j.colsurfa.2018.07.058.
  • Li, J.; Sun, J.; Lv, K.; Ji, Y.; Ji, J.; Liu, J. Temperature- and Salt-Resistant Micro-Crosslinked Polyampholyte Gel as Fluid-Loss Additive for Water-Based Drilling Fluids. Gels 2022, 8, 547. DOI: 10.3390/gels8050289.
  • Luo, Z.; Pei, J.; Wang, L.; Yu, P.; Chen, Z. Influence of an Ionic Liquid on Rheological and Filtration Properties of Water-Based Drilling Fluids at High Temperatures. Appl. Clay Sci. 2017, 136, 96–102. DOI: 10.1016/j.clay.2016.11.015.
  • Menezes, R. R.; Marques, L. N.; Campos, L. A.; Ferreira, H. S.; Santana, L. N. L.; Neves, G. A. Use of Statistical Design to Study the Influence of CMC on the Rheological Properties of Bentonite Dispersions for Water-Based Drilling Fluids. Appl. Clay Sci. 2010, 49, 13–20. DOI: 10.1016/j.clay.2010.03.013.
  • Cui, G.; Pei, S.; Rui, Z.; Dou, B.; Ning, F.; Wang, J. Whole Process Analysis of Geothermal Exploitation and Power Generation from a Depleted High-Temperature Gas Reservoir by Recycling CO2. Energy 2021, 217, 119340. DOI: 10.1016/j.energy.2020.119340.
  • He, Y.; Cheng, S.; Sun, Z.; Chai, Z.; Rui, Z. Improving Oil Recovery through Fracture Injection and Production of Multiple Fractured Horizontal Wells. Trans. ASME, J. Energy Resour. Technol. 2020, 142, 1–19. DOI: 10.1115/1.4045957.
  • Tang, Z.; Qiu, Z.; Zhong, H.; Mao, H.; Shan, K.; Kang, Y. Novel Acrylamide/2-Acrylamide-2-3 Methylpropanesulfonic Acid/Styrene/Maleic Anhydride Polymer-Based CaCO3 Nanoparticles to Improve the Filtration of Water-Based Drilling Fluids at High Temperature. Gels (Basel, Switzerland) 2022, 8, 322. DOI: 10.3390/gels8050322.
  • Balaga, D. K.; Kulkarni, S. D. A Review of Synthetic Polymers as Filtration Control Additives for Water-Based Drilling Fluids for High-Temperature Applications. J. Pet. Sci. Eng. 2022, 215, 110712. DOI: 10.1016/j.petrol.2022.110712.
  • Heier, K. H.; Lambert, B. Synthetic Polymer Extends Fluid Loss Control to HP/HT Environments. World Oil 2005, 226, 75–76.
  • Ma, X.; Zhu, Z.; Hou, D. Synthesis and Performance Evaluation of a Water-Soluble Copolymer as High-Performance Fluid Loss Additive for Water-Based Drilling Fluid at High Temperature. Russ. J. Appl. Chem. 2016, 89, 1694–1705.
  • Mao, H.; Qiu, Z.; Shen, Z.; Huang, W.; Zhong, H. Synthesis and Mechanism of Hydrophobic Associated Polymer Based Nano-Silica Filtrate Reducer. Acta Pet. Sin. 2014, 35, 771–778.
  • Huang, W.; Qiu, Z.; Cao, J. Development and Evaluation of Anti Ultra-High Temperature and Salt Tolerant Polymeric Filtrate Loss Reducer. Oilfield Chem. 2012, 29, 133.
  • Huang, W.; Qiu, Z.; Xu, J.; Xue, Y. Z.; Li, G. R.; Jiang, L. Development and Application of Ultra-High Temperature anti-Salt Polymer Fluid Loss Reducer. J. China Univ. Pet. Ed. Nat. Sci. 2011, 35, 155.
  • Sun, J.; Zhang, X.; Lv, K.; Liu, J.; Xiu, Z.; Wang, Z.; Huang, X.; Bai, Y.; Wang, J.; Jin, J.; et al. Synthesis of Hydrophobic Associative Polymers to Improve the Rheological and Filtration Performance of Drilling Fluids under High Temperature and High Salinity Conditions. J. Pet. Sci. Eng. 2022, 209, 109808. DOI: 10.1016/j.petrol.2021.109808.
  • Chu, Q.; Luo, P.; Zhao, Q.; Feng, J.; Kuang, X.; Wang, D. Application of a New Family of Organosilicon Quadripolymer as a Fluid Loss Additive for Drilling Fluid at High Temperature. J. Appl. Polym. Sci. 2013, 128, 28–40. DOI: 10.1002/app.38096.
  • Brus, J.; Zhigunov, A.; Czernek, J.; Kobera, L.; Uchman, M.; Matějíček, P. Control over the Self-Assembly and Dynamics of Metallacarborane Nanorotors by the Nature of the Polymer Matrix: A Solid-State NMR Study. Macromolecules 2014, 47, 6343–6354. DOI: 10.1021/ma501117a.
  • Tarrés, Q.; Espinosa, E.; Domínguez-Robles, J.; Rodríguez, A.; Mutjé, P.; Delgado-Aguilar, M. The Suitability of Banana Leaf Residue as Raw Material for the Production of High Lignin Content Micro/Nano Fibers: From Residue to Value-Added Products. Ind. Crops Prod. 2017, 99, 27–33. DOI: 10.1016/j.indcrop.2017.01.021.
  • Xu, X.; Zhou, J.; Nagaraju, D. H.; Jiang, L.; Marinov, V. R.; Lubineau, G.; Alshareef, H. N.; Oh, M. Flexible, Highly Graphitized Carbon Aerogels Based on Bacterial Cellulose/Lignin: Catalyst-Free Synthesis and Its Application in Energy Storage Devices. Adv. Funct. Mater. 2015, 25, 3193–3202. DOI: 10.1002/adfm.201500538.
  • Zhang, F.; Sun, J.; Dai, Z.; Chang, X.; Huang, X.; Liu, J.; Wang, Z.; Lv, K. Organosilicate Polymer as High Temperature Resistent Inhibitor for Water-Based Drilling Fluids. J. Polym. Res. 2020, 27, 107. DOI: 10.1007/s10965-019-1922-2.
  • Chang, X.; Sun, J.; Zhang, F.; Lv, K.; Zhou, X.; Wang, J.; Zhao, J. A Novel Zwitterionic Quaternary Copolymer as a Fluid-Loss Additive for Water-Based Drilling Fluids. Energy Sources Part A 2020. DOI: 10.1080/15567036.2020.1766600.
  • Qu, Y.; Lin, L.; Huang, H.; Li, X.; Zhang, Y.; Luo, Y. Influence of Zwitterionic Polymer Aging on the Properties of Montmorillonite. Petrochem. Technol. 2022, 51, 931–938.
  • Lin, L.; Li, X.; Shi, C.; Mao, Y. Desorption of Hydrolyzed Poly(AM/DMDAAC) from Bentonite and Its Decomposition in Saltwater under High Temperatures. E-POLYMERS 2019, 19, 527–534. DOI: 10.1515/epoly-2019-0056.
  • Luo, Y.; Lin, L.; Yu, W.; Li, X.; Gu, H.; Liu, H. Degradation Mechanism of P(AA/AMPS) and P(AM/AA/AMPS) Aqueous Solutions at High Temperature. Oilfield Chem. 2022, 39, 202–208.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.