2026/9/7

Naimeh Setareshenas

Academic rank: Assistant Professor
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Education: PhD.
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Faculty: Engineering
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Research

Title
Colloidal stability and rheological behavior of a hydrophilic nanofluid for wettability modification, interfacial tension reduction, and improving sweep efficiency at the pore scale of carbonate Colloidal stability and rheological behavior of a hydrophilic nanofluid for wettability modification, interfacial tension reduction, and improving sweep efficiency at the pore scale of carbonate formations
Type
JournalPaper
Keywords
Carbon nanotubes, Chitosan, Asphaltene inhibition, Interfacial phenomena, Pore-scale displacement
Year
2026
Journal Colloid and Interface Science Communications
DOI https://doi.org/10.1016/j.colcom.2026.100917
Researchers Jasim Mohammed ، Naimeh Setareshenas ، Ehsan Jafarbeigi ، Mohsen Mansouri ، marjan tanzifi

Abstract

This study introduces a novel hydrophilic nanofluid composed of multi-walled carbon nanotubes, chitosan biopolymer, and a zwitterionic surfactant (cocamidopropyl betaine) to address Enhanced Oil Recovery (EOR) challenges in carbonate reservoirs, including oil-wetness, high interfacial tension, and asphaltene instability. The optimized formulation at 200 ppm demonstrated excellent colloidal stability at 80 °C for 15 days (zeta potential: −58.74 mV) and enhanced viscosity relative to the pristine polymer solution. Wettability was drastically altered from an oil-wet state (136°) to a strongly water-wet condition (19.11°), while interfacial tension was reduced by 94% to an ultra-low value of 1.06 mN/m. Core flooding experiments yielded an incremental oil recovery of 35.84%. Asphaltene dispersant tests confirmed 93.43% efficiency at the optimal dosage. This work offers a scalable and environmentally conscious nanofluidic strategy for enhancing production from challenging asphaltenic carbonate formations.