Application and research progress of CO2 foaming system for oil displacement in oil and gas field development: A review and prospect

化学 流离失所(心理学) 石油工程 提高采收率 领域(数学) 化学工程 纳米技术 工程类 心理学 数学 材料科学 纯数学 心理治疗师
作者
Minglu Shao,Shanyong Zhang,Bowen Wu,Lipei Fu,Kaili Liao,Ailian Chang,Ben‐Qing Huang
出处
期刊:Journal of Surfactants and Detergents [Wiley]
标识
DOI:10.1002/jsde.12859
摘要

Abstract CO 2 foam system has the functions of oil displacement, plugging, and fracturing, and plays an important role in improving oil and gas production. In this paper, the effectiveness and mechanism of different surfactant systems for CO 2 foam and the methods to stabilize CO 2 foam are reviewed. The effectiveness and mechanism of ionic, nonionic, and Gemini surfactant systems for CO 2 foam were analyzed. The research status of CO 2 foaming agent system, gas‐soluble CO 2 foaming agent system, and CO 2 intelligent response foaming agent system based on anionic, nonionic, and zwitterionic compounds was described. The mechanism of polymer and nanoparticles stabilizing CO 2 foam system was also discussed. Through investigation, it is found that the performance of CO 2 foam system compounded with various chemicals is better, and the research is relatively perfect and diversified, so we can pay attention to the refinement of the compounding process in the future. Sulfonation and modification of surfactants can further improve the properties of surfactants. The characteristics of Gemini surfactants, supercritical CO 2 , and CO 2 ‐sensitive surfactants can be used to make CO 2 foaming agent have the characteristics of easy recovery, sustainability, anti‐corrosion, on–off control, and fluidity control. There is still room for development of such surfactants. Using polymers and nanoparticles to stabilize foam is the future development trend. This paper provides guidance for the further development and field application of highly effective CO 2 surfactant.

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