Department Petroleum Engineering, Montanuniversität Leoben, Leoben 8700, Austria.
Department Petroleum Engineering, Montanuniversität Leoben, Leoben 8700, Austria.
J Colloid Interface Sci. 2022 Jun;615:196-205. doi: 10.1016/j.jcis.2022.01.182. Epub 2022 Jan 29.
The emulsification of water and crude oil is typically examined and optimized in test tubes by optical means, that is, mixed under turbulent conditions and detected outside the porous medium in equilibrium. In this study, we investigate the rather complex case of crude oil emulsification by alkaline solutions to assess whether the classical phase behavior experiments are representative of the emulsification under laminar flow conditions in porous media.
We characterized the phase equilibrium in the test tubes through X-ray attenuation in micro-X-ray computed tomography (μCT). Moreover, we showed that for these systems, the conventional qualitative optical inspection leads to considerable misinterpretation. X-ray attenuation ensures a quantitative analysis directly comparable to results from μCT-based core-flood experiments, where phase mixing occurs in porous media flow. The study was complemented with microfluidic experiments providing additional high-resolution information on emulsion phases.
We conclusively show that in the complex in situ saponification of crude oil by alkaline flooding, (a) the emulsifications in test tubes and in porous media flow are comparable, considering the displacement process in the latter; (b) a minimum emulsion volume with balanced compositions leads to optimal oil recovery in μCT-based and conventional core flooding and in microfluidics.
水和原油的乳化作用通常通过光学手段在试管中进行检查和优化,即在湍流条件下混合,并在多孔介质达到平衡后在外部进行检测。在这项研究中,我们研究了碱性溶液中原油乳化的复杂情况,以评估经典的相行为实验是否代表了多孔介质中层流条件下的乳化作用。
我们通过微 X 射线计算机断层扫描(μCT)中的 X 射线衰减来描述试管中的相平衡。此外,我们表明,对于这些系统,传统的定性光学检查会导致相当大的误解。X 射线衰减可确保直接与基于 μCT 的岩心驱替实验结果进行定量分析,后者中在多孔介质流动中发生相混合。该研究还辅以微流控实验,为乳液相提供了额外的高分辨率信息。
我们明确表明,在碱性驱替过程中原油的复杂原位皂化中,(a)考虑到后者的驱替过程,试管和多孔介质流动中的乳化作用是可比的;(b)具有平衡组成的最小乳液体积可在基于 μCT 的常规岩心驱替和微流控中实现最佳的采油率。