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An alternative method to enhance w/o emulsion stability using modified dimer acid and its application in oil based drilling fluids

机译:一种使用改性二聚酸增强无水乳液稳定性的替代方法及其在油基钻井液中的应用

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This study presents an alternative method to enhance the emulsion stability of oil based drilling fluids (OBMs). Modified dimer acid (MDA) was synthesized with a molecular structure having two hydrophilic heads and two hydrophobic tails. Theoretically, the adsorption of MDA on an oil–water interface makes it possible to increase hydrogen bonding between water droplets and form three dimensional networks which benefit emulsion stability. The influence of MDA on the stability of base emulsions was studied by visual observation. Then the stabilization mechanism of MDA was analyzed from the micro and macro points of view by morphology study using a cryo-scanning electron microscope (cryo-SEM) and rheological measurements including viscosity vs. shear rates, zero-shear viscosity ( η _(0) ), and creep and recovery tests. Experimental results showed that a substantial improvement in emulsion stability was visually observed when the MDA concentration was 2 g L ~(?1) . From cryo-SEM observation, a honeycomb structure was observed in the emulsion containing 2 g L ~(?1) MDA, which can provide a physical barrier to restrain the movement of water droplets. In comparison with the rheological behaviors of the emulsion without MDA, a remarkably larger zero-shear viscosity, a solid-like behavior and a greater elasticity were observed when 2 g L ~(?1) MDA was present. Finally, the application in OBMs shows that MDA can largely enhance electrical stability (ES) and reduce the filtration volume. The method proposed in the paper could be used to enhance the stability of w/o emulsions in a variety of fields.
机译:这项研究提出了提高油基钻井液(OBM)乳化稳定性的另一种方法。合成了具有两个亲水头和两个疏水尾的分子结构的改性二聚酸(MDA)。从理论上讲,MDA在油水界面上的吸附可以增加水滴之间的氢键并形成有利于乳液稳定性的三维网络。通过目测观察MDA对基础乳液稳定性的影响。然后使用低温扫描电子显微镜(cryo-SEM)通过形态学研究从微观和宏观角度分析了MDA的稳定机理,并通过流变学方法测量了粘度-剪切速率,零剪切粘度(η_(0 )以及蠕变和恢复测试。实验结果表明,当MDA浓度为2g L〜(Δ1)时,目测观察到乳液稳定性有实质性的改善。从低温SEM观察,在含有2g L〜(α1)MDA的乳液中观察到蜂窝状结构,这可以提供物理屏障来抑制水滴的运动。与不具有MDA的乳液的流变行为相比,当存在2g L〜(α1)MDA时,观察到显着更大的零剪切粘度,类似固体的行为和更大的弹性。最后,在OBM中的应用表明MDA可以大大增强电稳定性(ES)并减少过滤量。本文提出的方法可用于提高W / O乳液在各种领域的稳定性。

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