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Development of a New Polymeric Surfactant for Chemical Enhanced Oil Recovery

机译:新型用于化学强化采油的聚合物表面活性剂的开发

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This work presents a new alkaline-surfactant (AS) flooding formulation that replaces and improves the traditional alkaline-surfactant-polymer (ASP) flooding slug. With the design of a cost-effective AS slug, a new series of polymeric surfactants was produced based on agriculture material. In this article, the polymeric surfactant was produced by a graft polymerization process using several surfactant-to-acrylamide ratios. This surfactant was designed to graft the sulfonated group to the polymer backbone as one component system for interfacial tension (IFT) reduction and viscosity control. The performance of the resultant surfactants was studied in the presence and absence of sodium carbonate as an alkaline agent at reservoir temperature of 90° C. The feasibility of applying the AS formula was based on IFT measurement between crude oil and AS solution and viscosity tests. As a result, the ratio of 1:0.5 (S:A) was selected as the optimum ratio for IFT reduction and viscosity control. A combination of alkali and surfactant with a concentration of 0.8 and 0.4% was found to significantly reduce the IFT while maintaining the desired viscosity of the solution.
机译:这项工作提出了一种新的碱性表面活性剂(AS)驱油配方,该配方替代并改进了传统的碱性表面活性剂聚合物(ASP)驱油塞。通过设计具有成本效益的AS塞料,基于农业原料生产了一系列新的聚合物表面活性剂。在本文中,使用几种表面活性剂与丙烯酰胺的比例,通过接枝聚合工艺生产了聚合物表面活性剂。设计该表面活性剂是将磺化基团接枝到聚合物主链上,作为一种降低界面张力(IFT)和控制粘度的组分系统。在存在和不存在碳酸钠作为碱性试剂的情况下,在90°C的储层温度下研究了所得表面活性剂的性能。应用AS公式的可行性基于原油和AS溶液之间的IFT测量和粘度测试。结果,选择1∶0.5(S∶A)的比例作为降低IFT和控制粘度的最佳比例。发现碱和表面活性剂的浓度为0.8和0.4%的组合可显着降低IFT,同时保持所需的溶液粘度。

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