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延时膨胀聚合物微球制备及天然气驱封窜性能研究
引用本文:赵海峰,吕伟,刘笑春,何思娴,王石头,毕卫宇. 延时膨胀聚合物微球制备及天然气驱封窜性能研究[J]. 石油化工高等学校学报, 2022, 35(4): 60. DOI: 10.3969/j.issn.1006-396X.2022.04.009
作者姓名:赵海峰  吕伟  刘笑春  何思娴  王石头  毕卫宇
作者单位:1.中国石油长庆油田分公司 油气工艺研究院,陕西 西安 7100182.低渗透油气田勘探开发国家工程实验室,陕西 西安 710018
基金项目:长庆油田提高采收率重大试验科研项目“镇252烃类气驱气窜防治技术研究”(1905?5?2)
摘    要:长庆油田某区块非均质性较强,地层中有大孔道、微裂缝和高渗透条带,在实施天然气驱过程中气窜风险较高,而传统聚合物微球吸水膨胀速率快,易剪切破碎,封堵强度低。针对这些缺点,通过引入激活交联剂,采用反相乳液聚合法合成了一种延时膨胀聚合物微球,并采用激光粒度仪、偏光显微镜等手段对其进行了结构表征;通过室内实验,系统评价了延时膨胀聚合物微球的抗温性、抗盐性、溶胀性、稳定性和天然气封堵性。结果表明,延时膨胀聚合物微球抗温85 ℃,抗盐100 000 mg/L,延时7 d膨胀,粒径扩大倍数达到5.5,并长期保持稳定,稳定性大于6个月,封堵率大于92.0%,可用于地层深部微裂缝和高渗条带的封堵作业。

关 键 词:延时膨胀  聚合物微球  天然气驱  封窜  
收稿时间:2021-10-13

Preparation of Polymer Microsphere Feature Delayed Swelling and Its Channeling Sealing Performance in Natural Gas Flooding
Haifeng Zhao,Lü Wei,Xiaochun Liu,Sixian He,Shitou Wang,Weiyu Bi. Preparation of Polymer Microsphere Feature Delayed Swelling and Its Channeling Sealing Performance in Natural Gas Flooding[J]. Journal of Petrochemical Universities, 2022, 35(4): 60. DOI: 10.3969/j.issn.1006-396X.2022.04.009
Authors:Haifeng Zhao  Lü Wei  Xiaochun Liu  Sixian He  Shitou Wang  Weiyu Bi
Affiliation:1.Oil Gas Technology Research Institute,PetroChina Changqing Oilfield Company,Xi'an Shaanxi 710018,China;2.National Engineering Laboratory for Exploration and Development of Low Permeability Oil and Gas Fields,Xi'an Shaanxi 710018,China
Abstract:A block in Changqing oilfield has high heterogeneity,and there are high?capacity channels, microfractures and high?permeability zones in its formations. During the implementation of natural gas flooding, the high risk of gas channeling must be considered. The traditional polymer microspheres are characterized by fast water absorption and expansion rate.It is easy to shear and crush its plugging strength is low. In view of these shortages,a polymer microsphere featuring delayed swelling was thus synthesized by introducing and activating a crosslinker and adopting inverse emulsion polymerization to address those defects. Its structure was characterized by a laser particle size analyzer and a polarizing microscope. Laboratory experiments were conducted to systematically evaluate the performance of the polymer microsphere featuring delayed swelling in temperature resistance,salt resistance,swelling,stability,and plugging during natural gas flooding.The results show that with a temperature resistance of 85 ℃, a salt resistance of 100 000 mg/L, a swelling time delay of 7 days, a particle size enlargement factor of 5.5, long?term stability (more than 6 months), and a plugging rate of more than 92.0%, the proposed polymer microsphere featuring delayed swelling can be used for plugging deep microfractures and high?permeability zones in the formations.
Keywords:Delay swelling  Polymer microspheres  Natural gas flooding  Channeling sealing  
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