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Article

Development and Performance Evaluation of a High-Temperature-Resistant Salt-Responsive Micro-Crosslinked Polymer Gel Filtration Loss Reducer

1
Drilling Fluid Technology Service Company, CNPC Chuanqing Drilling Engineering Co., Ltd., Chengdu 610051, China
2
School of Petroleum Engineering, China University of Petroleum—East China (UPC), Qingdao 266580, China
*
Author to whom correspondence should be addressed.
Gels 2026, 12(7), 564; https://doi.org/10.3390/gels12070564 (registering DOI)
Submission received: 25 May 2026 / Revised: 18 June 2026 / Accepted: 24 June 2026 / Published: 25 June 2026
(This article belongs to the Topic Polymer Gels for Oil Drilling and Enhanced Recovery)

Abstract

To address the difficulty in controlling the filtration performance of water-based drilling fluids under high-temperature and high-salinity conditions during the drilling of deep and ultra-deep wells, a salt-responsive micro-crosslinked polymer gel filtration loss reducer, designated LZX, was developed. The synthesis employed 2-acrylamido-2-methylpropane sulfonic acid (AMPS), N,N-dimethylacrylamide (DMAA), dimethyldiallylammonium chloride (DMDAAC), and a betaine monomer containing an unsaturated double bond as monomers, with polyethylene glycol diacrylate (PEGDA) introduced as a crosslinker. Experimental results showed that the product structure matched the design expectations, and the thermal decomposition temperature of the main molecular chain exceeded 290 °C, indicating good thermal stability. At 220 °C under saturated salt conditions, a dosage of 2.5 wt% LZX maintained the API filtration loss at 5.8 mL and the HPHT filtration loss at 28.6 mL. Comparative experiments at different temperatures demonstrated that LZX exhibited superior filtration control performance compared to the commercial high-temperature filtration reducer Driscal Temp and Driscal D. The micro-crosslinked structure of LZX enhanced the rigidity of the molecular chains, raising the upper limit of its thermal resistance. Rheological and viscosity-average molecular weight measurements revealed that LZX exhibited typical antipolyelectrolyte behavior in high-salinity environments—the molecular chains tended to extend and the filtration reduction capability was accordingly maintained—preliminarily achieving a functional transition from passive salt tolerance to active salt responsiveness. LZX is expected to support the construction of high-performance water-based drilling fluids with high temperature and high salt resistance for future deep-earth drilling.
Keywords: water-based drilling fluid; filtration loss reducer; micro-crosslinking; salt-responsive; high-temperature resistance water-based drilling fluid; filtration loss reducer; micro-crosslinking; salt-responsive; high-temperature resistance

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MDPI and ACS Style

Xiao, F.; Xia, Y.; Liu, W.; Liu, J.; Sun, Y. Development and Performance Evaluation of a High-Temperature-Resistant Salt-Responsive Micro-Crosslinked Polymer Gel Filtration Loss Reducer. Gels 2026, 12, 564. https://doi.org/10.3390/gels12070564

AMA Style

Xiao F, Xia Y, Liu W, Liu J, Sun Y. Development and Performance Evaluation of a High-Temperature-Resistant Salt-Responsive Micro-Crosslinked Polymer Gel Filtration Loss Reducer. Gels. 2026; 12(7):564. https://doi.org/10.3390/gels12070564

Chicago/Turabian Style

Xiao, Fengfeng, Yuhao Xia, Wushuo Liu, Jingping Liu, and Yuanwei Sun. 2026. "Development and Performance Evaluation of a High-Temperature-Resistant Salt-Responsive Micro-Crosslinked Polymer Gel Filtration Loss Reducer" Gels 12, no. 7: 564. https://doi.org/10.3390/gels12070564

APA Style

Xiao, F., Xia, Y., Liu, W., Liu, J., & Sun, Y. (2026). Development and Performance Evaluation of a High-Temperature-Resistant Salt-Responsive Micro-Crosslinked Polymer Gel Filtration Loss Reducer. Gels, 12(7), 564. https://doi.org/10.3390/gels12070564

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