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Preparation and solution characteristics of a novel hydrophobically associating terpolymer for enhanced oil recovery

机译:新型疏水缔合三元共聚物的制备及其溶液特性以提高采油率

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Hydrophobically associating terpolymers were prepared by the micellar copolymerization technique using acrylamide (AM), 2-trimethylammonium ethyl methacrylate chloride (TMAEMC) as a cationic monomer, and small amounts of 5,5,5-triphenyl-1-pentene (TP<0.5 mol-%) as the hydrophobe. The structure of the copolymer was characterized by FT-IR and 1H-NMR. The aqueous solution properties of the terpolymers were also investigated as functions of polymer concentration, salinity, temperature and shear rate. The results showed that the thickening behavior of these terpolymers are remarkably dependent on both the number and length of hydrophobic segments in the copolymer chains. As expected, the terpolymers exhibited improved viscosity enhancement properties as the concentration exceeded 0.25 g·dL~(-1), due to intermolecular hydrophobic association. Additional evidence for hydrophobic microdomains was obtained utilizing pyrene-probe fluorescence. Additionally, the ternary copolymers showed favorable salt tolerance, temperature resistance, and recoverable viscosity after shearing.
机译:通过胶束共聚技术,使用丙烯酰胺(AM),甲基丙烯酸2-三甲铵甲基丙烯酸氯(TMAEMC)作为阳离子单体和少量5,5,5-三苯基-1-戊烯(TP <0.5 mol -%)作为疏水物。通过FT-IR和1H-NMR表征共聚物的结构。还研究了三元共聚物的水溶液性质与聚合物浓度,盐度,温度和剪切速率的关系。结果表明,这些三元共聚物的增稠行为明显取决于共聚物链中疏水链段的数量和长度。如预期的那样,由于分子间疏水缔合,当浓度超过0.25 g·dL〜(-1)时,三元共聚物表现出改进的增粘性能。利用pyr探针荧光获得了疏水性微区的其他证据。另外,三元共聚物在剪切后显示出良好的耐盐性,耐热性和可恢复的粘度。

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