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A novel surface active polymer oil displacement agent

机译:新型表面活性聚合物驱油剂

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Based on the relationship between the molecule structure of monomers and their performance, two types of polymerizable monomers with low oil/water interfacial tension have been synthesized, which coplymerizes acrylamide to synthesize a novel polymer oil displacement agent under compound initiator and low polymeric temperature. Its structure and distribution status in brine solution were characterized by infrared spectroscopy and freeze etching electron microscope. The results show that the polymer has good water solubility, viscosifying properties, salt-resistance and temperature-tolerance, shearing-resistance in brines. Due to the graft polymerization of acrylamide and the polymerizable surface-active monomers, the polymer overcomes chromatographic separation effect, and has low oil/water interfacial tension. Interfacial tension of 0.15% polymer solution (prepared in Daqing simulation brine) is around 10?1mN/m in Daqing No.1 oil plant crude oil. Core flooding experiments show that the oil recovery of the novel surface active polymer is 5.2% higher than that of ordinary hydrolyzed polyacrylamide because of its better viscosifying performance and lower oil/water interfacial tension.
机译:基于单体的分子结构与其性能之间的关系,合成了两种油/水界面张力低的可聚合单体,将其丙烯酰胺共聚合,在化合物引发剂和低聚合温度下合成了新型的聚合物驱油剂。通过红外光谱和冷冻蚀刻电子显微镜表征了其在盐溶液中的结构和分布状况。结果表明,该聚合物在盐水中具有良好的水溶性,增粘性能,耐盐性和耐温性,抗剪切性。由于丙烯酰胺和可聚合的表面活性单体的接枝聚合,该聚合物克服了色谱分离的作用,并具有较低的油/水界面张力。大庆第一石油厂原油中0.15%聚合物溶液(由大庆模拟盐水制得)的界面张力约为10?1mN / m。岩心驱油实验表明,新型表面活性聚合物的采油率比普通水解聚丙烯酰胺高5.2%,因为它具有更好的增粘性能和较低的油/水界面张力。

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