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微流控技术:提高采收率 (EOR) 的一种可行的筛选技术。

Microfluidics: an enabling screening technology for enhanced oil recovery (EOR).

机构信息

Evonik Corporation, 2 Turner Place, Piscataway, NJ 08854, USA.

出版信息

Lab Chip. 2016 May 21;16(10):1777-96. doi: 10.1039/c6lc00318d. Epub 2016 Apr 18.

Abstract

Oil production is a critical industrial process that affects the entire world population and any improvements in its efficiency while reducing its environmental impact are of utmost societal importance. The paper reviews recent applications of microfluidics and microtechnology to study processes of oil extraction and recovery. It shows that microfluidic devices can be useful tools in investigation and visualization of such processes used in the oil & gas industry as fluid propagation, flooding, fracturing, emulsification and many others. Critical macro-scale processes that define oil extraction and recovery are controlled by the micro-scale processes based on wetting, adhesion, surface tension, colloids and other concepts of microfluidics. A growing number of research efforts demonstrates that microfluidics is becoming, albeit slowly, an accepted methodology in this area. We propose several areas of development where implementation of microfluidics may bring about deeper understanding and hence better control over the processes of oil recovery based on fluid propagation, droplet generation, wettability control. Studies of processes such as hydraulic fracturing, sand particle propagation in porous networks, high throughput screening of chemicals (for example, emulsifiers and surfactants) in microfluidic devices that simulate oil reservoirs are proposed to improve our understanding of these complicated physico-chemical systems. We also discuss why methods of additive manufacturing (3D printing) should be evaluated for quick prototyping and modification of the three-dimensional structures replicating natural oil-bearing rock formations for studies accessible to a wider audience of researchers.

摘要

采油是一个关键的工业过程,影响着全球人口,任何提高其效率同时减少其环境影响的改进都对社会具有至关重要的意义。本文综述了微流控和微技术在研究采油和回收过程中的最新应用。结果表明,微流控装置在研究和可视化石油和天然气工业中使用的诸如流体传播、驱替、压裂、乳化等过程时是非常有用的工具。决定采油和回收的关键宏观过程受基于润湿性、附着力、表面张力、胶体和微流控其他概念的微尺度过程控制。越来越多的研究工作表明,微流控虽然缓慢,但正在成为该领域被接受的方法。我们提出了几个可能带来更深入理解和更好控制采油过程的发展领域,这些过程基于流体传播、液滴生成、润湿性控制。提出了在模拟油藏的微流控装置中研究水力压裂、多孔网络中砂粒传播、高通量筛选化学品(例如乳化剂和表面活性剂)等过程的建议,以提高我们对这些复杂物理化学系统的理解。我们还讨论了为什么应该评估增材制造(3D 打印)方法,以便快速原型制作和修改复制含油岩石地层的三维结构,从而使更广泛的研究人员群体能够进行研究。

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