致密油藏CO2驱响应性防窜体系的制备及性能
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1.西南石油大学 油气藏地质及开发工程全国重点实验室;2.西南石油大学 石油与天然气工程学院;3.长庆化工集团有限公司

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TE35

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国家自然科学基金(52274041)


Preparation and properties of responsive channeling prevention system for CO2 flooding in tight reservoirs
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1.National Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,Southwest Petroleum University;2.Petroleum Engineering School,Southwest Petroleum University;3.Xi''an ChangQing Chemical Group Co Ltd,Xi''an

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    摘要:

    以3-二甲胺基丙胺和油酸为主剂制备具有叔胺结构的CO2响应性单体N,N-二甲基油酸酰胺丙基叔胺(DOAPA),将其与有机反离子互配构建具有CO2响应性的蠕虫状胶束(CO2-TWMS)。通过体系与CO2接触前后的电导率、化学结构和微观形貌变化表征体系的响应性,结合体系表面活性变化及致密基质/裂缝双重介质CO2驱替与CO2-TWMS防窜过程中的压力和采收率变化揭示CO2-TWMS防窜性能与机制。实验结果表明,当反离子为对甲苯磺酸钠,与DOAPA的摩尔比为1:1时,CO2-TWMS体系的黏度最大。CO2和N2能够刺激体系电导率在0.9ms/cm和1.95ms/cm之间可逆变化、诱导微观形貌在蠕虫状胶束和球形胶束间转换。此外,CO2能够将体系临界胶束浓度从1mmol/L降低至0.25mmol/L,最低表面张力从30.2mN/m降低至29.1mN/m,体系在气液界面的吸附效率和效能增强,有利于胶束的形成。在致密基质-裂缝双重介质中,CO2诱导蠕虫状胶束形成,增大驱替过程中的压差,扩大CO2驱替波及效率,采收率提高22.6%。

    Abstract:

    CO2-responsive monomer N, N-Dimethyl oleic amide propyl tertiary amine (DOAPA) with tertiary amine structure was prepared by using 3-dimethylaminopropylamine and oleic acid as main agents, and was intermixed with organic counter ions to construct CO2-responsive worm-like micelle (CO2-TWMS). The response of the system was characterized by the changes of conductivity, chemical structure and micro-morphology before and after contact with CO2. The anti-channeling performance and mechanism of the system were revealed by combining the changes of surface activity of the system and the changes of pressure and recovery efficiency in the process of CO2 displacement in dense matrix/crack medium and CO2-TWMS channeling prevention. The experimental results show that the viscosity of CO2-TWMS system is the highest when the inverse ion is sodium p-toluene sulfonate and the molar ratio of DOAPA is 1:1. CO2 and N2 can stimulate the reversible change of electrical conductivity between 0.9ms/cm and 1.95ms/cm, and induce the transformation of micromorphology between wormlike micelles and spherical micelles. In addition, CO2 can reduce the critical micelle concentration from 1mmol/L to 0.25mmol/L, and the lowest surface tension from 30.2mN/m to 29.1mN/m. The adsorption efficiency and efficacy of the system at the gas-liquid interface are enhanced, which is conducive to the formation of micelles. In the dense matter-fracture medium, CO2 induced wormlike micelle formation, increased the pressure difference during displacement, expanded the CO2 displacement sweep efficiency, and increased the recovery rate by 22.6%.

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杜代军,方泽洲,章洋阳,蒲万芬,张辉,朱建林,曹效东.致密油藏CO2驱响应性防窜体系的制备及性能[J].精细化工,2024,41(5):

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历史
  • 收稿日期:2023-07-10
  • 最后修改日期:2023-09-20
  • 录用日期:2023-09-11
  • 在线发布日期: 2024-04-29
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