Pinto Roberta T, Feu Karla S, Dalmaschio Cleocir J, Nascimento Andreas, Lacerda Valdemar
LabPetro - Department of Chemistry, Center for Exact Sciences (CCE), Federal University of Espírito Santo (UFES), Vitória, ES 29075-910, Brazil.
Institute of Mechanical Engineering, Federal University of Itajuba (UNIFEI), Itajuba, MG 37500-903, Brazil.
ACS Omega. 2025 Jan 20;10(4):3262-3281. doi: 10.1021/acsomega.4c08428. eCollection 2025 Feb 4.
The use of nanocellulose (NC)-based Pickering emulsions represents an advancement in chemically enhanced oil recovery (cEOR) methods. The main challenge of cEOR is to develop stable and efficient fluids for applications under reservoir conditions. Pickering emulsions have emerged as a possible solution for stabilizing chemical injection fluids. These emulsions are stabilized by solid particles instead of surfactants and have been the focus of research over the past decade because of their high stability. Although these emulsions present promising solutions, most research has focused on nonbiodegradable inorganic particles, raising concerns about their environmental impact. In this context, nanocellulose (NC) has emerged as an innovative and sustainable alternative due to its biodegradability, abundance, and unique surface chemistry. This contribution presents an exploratory literature review on the use of Pickering emulsions, focusing on nanocellulose in the context of enhanced oil recovery (EOR) as an alternative for fluid stabilization under reservoir conditions. The main mechanisms of oil recovery, such as interfacial tension reduction, crude oil emulsification, capillary disjunction, pressure, and fluid rheological behavior, are discussed. This Review highlights the great potential of nanocellulose-based Pickering emulsions to make EOR processes more sustainable and emphasizes the need for further studies to understand the mechanisms involved. A total of 176 scientific articles were analyzed and evaluated to provide insights and contribute to the advancement of cEOR, in addition to addressing the challenges encountered.
基于纳米纤维素(NC)的皮克林乳液的应用代表了化学强化采油(cEOR)方法的一项进步。cEOR的主要挑战在于开发适用于油藏条件的稳定且高效的流体。皮克林乳液已成为稳定化学注入流体的一种可能解决方案。这些乳液由固体颗粒而非表面活性剂稳定,并且由于其高稳定性,在过去十年一直是研究的焦点。尽管这些乳液提供了有前景的解决方案,但大多数研究都集中在不可生物降解的无机颗粒上,这引发了对其环境影响的担忧。在此背景下,纳米纤维素(NC)因其生物可降解性、丰富性和独特的表面化学性质,已成为一种创新且可持续的替代物。本文献综述对皮克林乳液的应用进行了探索性研究,重点关注纳米纤维素在强化采油(EOR)背景下作为油藏条件下流体稳定化替代物的情况。讨论了采油的主要机制,如界面张力降低、原油乳化、毛细管断开、压力和流体流变行为。本综述强调了基于纳米纤维素的皮克林乳液使EOR过程更具可持续性的巨大潜力,并强调需要进一步研究以了解其中涉及的机制。总共分析和评估了176篇科学文章,以提供见解并推动cEOR的发展,同时解决所遇到的挑战。