提高采收率
微生物采油
表面张力
流离失所(心理学)
润湿
材料科学
纳米-
纳米颗粒
化学工程
化学
石油工程
纳米技术
复合材料
微生物
细菌
地质学
工程类
古生物学
物理
心理治疗师
量子力学
心理学
作者
Bo Wang,Shun-Ping Wang,Hao Yan,Yitong Bai,Yuanbin She,Fan Zhang
出处
期刊:ACS omega
[American Chemical Society]
日期:2023-05-05
卷期号:8 (19): 17122-17133
被引量:2
标识
DOI:10.1021/acsomega.3c01447
摘要
Nanoparticles (NPs) have attracted great attention in the tertiary oil recovery process due to their unique properties. As an economical and efficient green synthesis method, biosynthesized nanoparticles have the advantages of low toxicity, fast preparation, and high yield. In this study, with the theme of biotechnology, for the first time, the bio-nanoparticles reduced by iron-reducing bacteria were compounded with the biosurfactant produced by Bacillus to form a stable bio-nano flooding system, revealing the oil flooding mechanism and enhanced oil recovery (EOR) potential of the bio-nano flooding system. The interfacial properties of the bio-nano-oil displacement system were studied by interfacial tension and wettability change experiments. The enhanced oil recovery potential of the bio-nano-oil displacement agent was measured by microscopic oil displacement experiments and core flooding experiments. The bio-nano-oil displacement system with different nanoparticle concentrations can form a stable dispersion system. The oil-water interfacial tension and contact angle decreased with the increase in concentration of the bio-nano flooding system, which also has a high salt tolerance. Microscopic oil displacement experiments proved the efficient oil displacement of the bio-nano-oil displacement system and revealed its main oil displacement mechanism. The effects of concentration and temperature on the recovery of the nano-biological flooding system were investigated by core displacement experiments. The results showed that the recovery rate increased from 4.53 to 15.26% with the increase of the concentration of the system. The optimum experimental temperature was 60 °C, and the maximum recovery rate was 15.63%.
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