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Nanoparticle Stabilized Foam in Carbonate and Sandstone Reservoirs

机译:纳米粒子稳定在碳酸盐和砂岩储层中的泡沫

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Foam flooding as a mechanism to enhance oil recovery has been intensively studied and is the subject of multiple research groups However, limited stability of surfactant-generated foam in presence of oil and low chemical stability of surfactants in the high temperature and high salinity of an oil reservoir are among the reasons for foam EOR not being widely applied in the field. Unlike surfactants, nanoparticles, which are shown to be effective in stabilizing bulk foam, are chemically stable in a wide range of physicochemical conditions. Recent studies suggest that synthesized nanoparticles with altered surface properties can aid foam generation and increase foam stability in porous media. In this paper, the focus lies on a silica-based nanoparticle that is available in large quantities and can be processed economically without separate surface treatment, which gives it the potential to become a practical solution in the field. The research is primarily conducted by performing core-flooding experiments under varying conditions to quantitatively assess and compare the potential of the nanoparticle-enhanced foam. Two types of reservoir rocks have been investigated: sandstone and carbonate rocks. It is observed that by adding even low concentrations of nanoparticles to a near-CMC surfactant solution, the foam viscosity considerably increases.
机译:作为增强石油回收的机制的泡沫洪水已经集中研究,并且是多种研究组的主题,然而,在油的高温和高盐度下,表面活性剂的低化学稳定性的表面活性剂产生的泡沫的稳定性有限水库是泡沫益叶的原因之一,而不是广泛应用于该领域。与表面活性剂不同,显示在稳定体泡沫的纳米颗粒中,在宽范围的物理化学条件下是化学稳定的。最近的研究表明,具有改变的表面性质的合成纳米颗粒可以帮助泡沫产生并增加多孔介质中的泡沫稳定性。在本文中,焦点位于基于二氧化硅的纳米粒子,其具有大量可用,并且可以在没有单独的表面处理的情况下经济地处理,这使得它能够成为现场中的实用解决方案。该研究主要通过在不同条件下进行核洪水实验来定量评估和比较纳米颗粒增强泡沫的潜力。已经研究了两种类型的储层岩石:砂岩和碳酸盐岩。观察到通过将甚至低浓度的纳米颗粒添加到近CMC表面活性剂溶液中,泡沫粘度显着增加。

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