Nanoemulsions: A Versatile Technology for Oil and Gas Applications

N. Aljabri, Nan Shi
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Abstract

Nanoemulsions (NEs) are kinetically stable emulsions with droplet size on the order of 100 nm. Many unique properties of NEs, such as stability and rheology, have attracted considerable attention in the oil industry. Here, we review applications and studies of NEs for major upstream operations, highlighting useful properties of NEs, synthesis to render these properties, and techniques to characterize them. We identify specific challenges associated with large-scale applications of NEs and directions for future studies. We first summarize useful and unique properties of NEs, mostly arising from the small droplet size. Then, we compare different methods to prepare NEs based on the magnitude of input energy, i.e., low-energy and high-energy methods. In addition, we review techniques to characterize properties of NEs, such as droplet size, volume fraction of the dispersed phase, and viscosity. Furthermore, we discuss specific applications of NEs in four areas of upstream operations, i.e., enhanced oil recovery, drilling/completion, flow assurance, and stimulation. Finally, we identify challenges to economically tailor NEs with desired properties for large-scale upstream applications and propose possible solutions to some of these challenges. NEs are kinetically stable due to their small droplet size (submicron to 100 nm). Within this size range, the rate of major destabilizing mechanisms, such as coalescence, flocculation, and Ostwald ripening, is considerably slowed down. In addition, small droplet size yields large surface-to-volume ratio, optical transparency, high diffusivity, and controllable rheology. Similar to applications in other fields (food industry, pharmaceuticals, cosmetics, etc.), the oil and gas industry can also benefit from these useful properties of NEs. Proposed functions of NEs include delivering chemicals, conditioning wellbore/reservoir conditions, and improve chemical compatibility. Therefore, we envision NEs as a versatile technology that can be applied in a variety of upstream operations. Upstream operations often target a wide range of physical and chemical conditions and are operated at different time scales. More importantly, these operations typically consume a large amount of materials. These facts not only suggest efforts to rationally engineer properties of NEs in upstream applications, but also manifest the importance to economically optimize such efforts for large-scale operations. We summarize studies and applications of NEs in upstream operations in the oil and gas industry. We review useful properties of NEs that benefit upstream applications as well as techniques to synthesize and characterize NEs. More importantly, we identify challenges and opportunities in engineering NEs for large-scale operations in different upstream applications. This work not only focuses on scientific aspects of synthesizing NEs with desired properties but also emphasizes engineering and economic consideration that is important in the oil industry.
纳米乳液:石油和天然气应用的通用技术
纳米乳剂(NEs)是一种动力学稳定的乳剂,其液滴尺寸约为100 nm。NEs的许多独特性能,如稳定性和流变性,在石油工业中引起了相当大的关注。在这里,我们回顾了网元在主要上游作业中的应用和研究,重点介绍了网元的有用特性、呈现这些特性的合成以及表征它们的技术。我们确定了与NEs大规模应用相关的具体挑战和未来研究的方向。我们首先总结了NEs的有用和独特的性质,主要是由于小液滴尺寸。然后,我们根据输入能量的大小比较了不同的网元制备方法,即低能和高能方法。此外,我们回顾了表征NEs性质的技术,如液滴大小,分散相的体积分数和粘度。此外,我们还讨论了NEs在上游作业的四个领域的具体应用,即提高采收率、钻井/完井、流动保证和增产。最后,我们确定了在大规模上游应用中经济地定制具有所需属性的NEs所面临的挑战,并针对其中一些挑战提出了可能的解决方案。由于它们的液滴尺寸小(亚微米到100纳米),因此具有动力学稳定性。在这个尺寸范围内,主要不稳定机制的速率,如聚结、絮凝和奥斯特瓦尔德成熟,相当慢。此外,小液滴尺寸产生大的表面体积比,光学透明度,高扩散率和可控的流变性。与其他领域(食品工业、制药、化妆品等)的应用类似,石油和天然气工业也可以从NEs的这些有用特性中受益。新提出的功能包括输送化学物质、调节井筒/油藏条件以及改善化学物质相容性。因此,我们认为NEs是一种通用技术,可以应用于各种上游作业。上游作业通常针对各种物理和化学条件,并且在不同的时间尺度上进行。更重要的是,这些操作通常会消耗大量的材料。这些事实不仅表明了在上游应用中合理设计NEs属性的努力,而且表明了在大规模操作中经济优化此类努力的重要性。我们总结了在油气行业上游作业中的研究和应用。我们回顾了有益于上游应用的网元的有用性质以及合成和表征网元的技术。更重要的是,我们确定了在不同上游应用中大规模操作的工程NEs的挑战和机遇。这项工作不仅侧重于合成具有所需性能的NEs的科学方面,而且还强调了在石油工业中重要的工程和经济考虑。
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