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Polymeric Kinetic Hydrate Inhibitors in NaCl Brine-Sediment Media: Hydrate Performance, Rheological Structuring, and
Guan-Lin Zhong1,2, Ren Wang2, Jian-Long Wang2
1School of Oil & Natural Gas Engineering, Southwest Petroleum University, Chengdu 610500, China.
Abstract:
Gas hydrate plugging remains a persistent flow-assurance challenge in offshore oil and gas operations. PVP, pectin, CMCS, and PASP were compared at 0.1-0.5 wt% in pure water, 3.5 wt% NaCl brine, pure water-sediment, and brine-sediment media using hydrate kinetics, Raman spectroscopy, CST, SEM/EDS, zeta potential, viscosity screening, and quantitative rheology. At 0.5 wt% and 3 °C, all sediment-containing formulations were shear-thinning. CSS ramps revealed continuous stress-dependent flow consistent with progressive yielding, while oscillatory measurements indicated weak elastic-dominant responses for polymer-containing suspensions. Pectin gave the highest storage modulus and the strongest salinity-induced increase in oscillatory flow-point stress (approximately 0.092 to 0.178 Pa), whereas PASP retained the most favorable multimetric KHI response and the highest 500 s recovery in brine-sediment. PVP shifted from an oscillatory flow point above 0.209 Pa in pure water-sediment to approximately 0.156 Pa in brine-sediment. These results show that small-deformation stiffness, steady yielding, oscillatory flow transition, post-shear recovery, and KHI performance are distinct but partially coupled material responses. The combined evidence supports weak, deformable polymer-sediment structuring rather than a single rheological strength mechanism governing hydrate inhibition.
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