提高采收率
表面张力
流离失所(心理学)
润湿
材料科学
聚丙烯酰胺
流变学
环境友好型
毛细管作用
化学工程
石油工程
化学
复合材料
高分子化学
工程类
生态学
物理
生物
心理治疗师
量子力学
心理学
作者
Xiaohan Zhang,Chang-Jing Zhou,Yumei Xiao,Bo Hui,Yong-Gang Xie,Yubin Su,Xinru Li,Jie Huang,Maochang Liu
标识
DOI:10.1016/j.petsci.2023.12.013
摘要
Polymer microspheres (PMs), such as polyacrylamide, have been widely applied for enhanced oil recovery (EOR), yet with environmental concerns. Here, we report a microfluid displacement technology containing a bio-based eco-friendly material, i.e., calcium alginate (CaAlg) microspheres for EOR. Two dominant mechanisms responsible for EOR over CaAlg fluid have been verified, including the microscopic oil displacement efficacy augmented by regulating capillary force (determined by the joint action of interfacial tension and wettability between different phases) and macroscopic sweep volume increment through profile control and mobility ratio reduction. This comprehensive effectiveness can be further impacted when the CaAlg microsphere is embellished ulteriorly by using appropriate amount of sodium dodecyl sulfonate (SDS). The core flooding and nuclear magnetic resonance (NMR) tests demonstrate that CaAlg-SDS microsphere can balance the interphase property regulation (wettability alteration and IFT reduction) and rheology properties, enabling simultaneous profile control and oil displacement. Excessive introduction of SDS will have a negative impact on rheological properties, which is not favored for EOR. Our results show that the involvement of 4-mM SDS will provide the best behavior, with an EOR rate of 34.38%. This cost-effective and environmental-friendly bio-microsphere-based microfluidic displacement technology is expected to achieve "green" oil recovery in future oilfield exploitation.
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