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Design and Study of a Novel Thermal-Resistant and Shear-Stable Amphoteric Polyacrylamide in High-Salinity Solution

机译:高盐溶液中新型耐高温剪切稳定两性聚丙烯酰胺的设计与研究

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摘要

Water-soluble polymers are widely used in oilfields. The rheological behaviors of these polymers in high-salinity solution are very important for stimulation of high-salinity reservoirs. In this work, a novel thermal-resistant and shear-stable amphoteric polyacrylamide (PASD), prepared from acrylamide (AM), sodium styrene sulfonate (SSS), and acryloxyethyl trimethylammonium chloride (DAC) monomers, was prepared by free-radical polymerization in high-salinity solution. The amphoteric polyacrylamide was characterized by Fourier transform infrared (FTIR) spectroscopy, nuclear magnetic resonance spectroscopy (1H NMR), elemental analysis, thermogravimetric analysis (TG), and scanning electron microscopy (SEM). The amphoteric polyacrylamide exhibited excellent salinity tolerance. The slow increase in apparent viscosity of the polymer with increase in salinity was interesting. The amphoteric polyacrylamide showed perfect temperature resistance in high-salinity solution. The viscosity retention reached 38.9% at 120 °C and was restored to 87.8% of its initial viscosity when temperature was decreased to room temperature. The retention ratio of apparent viscosity reached 49.7% at 170 s−1 and could still retain it at 25.8% at 1000 s−1. All these results demonstrated that PASD had excellent thermal-resistance and shear-stability in high-salinity solution. We expect that this work could provide a new strategy to design polymers with excellent salinity-tolerance, thermal-resistance, and shear-stability performances.
机译:水溶性聚合物广泛用于油田。这些聚合物在高盐溶液中的流变行为对于增产高盐储层非常重要。在这项工作中,由丙烯酰胺(AM),苯乙烯磺酸钠(SSS)和丙烯酰氧基乙基三甲基氯化铵(DAC)单体制备了一种新型的耐热且剪切稳定的两性聚丙烯酰胺(PASD),方法是在高盐溶液。通过傅立叶变换红外光谱(FTIR),核磁共振光谱( 1 H NMR),元素分析,热重分析(TG)和扫描电子显微镜(SEM)对两性聚丙烯酰胺进行表征。两性聚丙烯酰胺表现出优异的耐盐性。随着盐度的增加,聚合物的表观粘度的缓慢增加是令人感兴趣的。两性聚丙烯酰胺在高盐溶液中显示出完美的耐热性。在120℃下的粘度保持率达到38.9%,并且当温度降低至室温时恢复到其初始粘度的87.8%。表观粘度在170 s -1 下的保持率为49.7%,在1000 s -1 下仍可保持在25.8%。所有这些结果表明,PASD在高盐溶液中具有出色的耐热性和剪切稳定性。我们希望这项工作可以提供一种设计具有优异耐盐性,耐热性和剪切稳定性能的聚合物的新策略。

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