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Interfacial rheology of asphaltenes in water-in-hydrocarbon emulsions.

机译:烃包水型乳液中沥青质的界面流变学。

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In this thesis, the role of asphaltenes in stabilizing water-in-hydrocarbon emulsions was investigated by measuring rheological (elasticity) and mechanical (skin formation) properties of asphaltenic films at the hydrocarbon/water interface. The elasticity measurements were obtained using an IT concept Axisymmetric Drop Shape Analyzer, which involves oscillating a hydrocarbon droplet in an aqueous medium. It was found that the total modulus depends on the frequency of the oscillations, asphaltene concentration, and solvent composition. The modulus was found to increase monotonically with frequency at any given concentration. At very low concentrations, the modulus appeared to be purely elastic. At higher concentrations, a viscous modulus appeared and the elastic modulus decreased as diffusion increasingly affected the measurements. The elastic and viscous moduli both increased as the heptane content increased.; Mechanical film properties, such as crumpling, film lifetime, and film ratio experiments performed on the same apparatus and with the same fluids, measured as a function of the aging time, asphaltene concentration, solvent composition, and temperature. The film lifetime increased with aging time and asphaltene concentration, and there was no trend with heptane content. The film ratio increased with aging time, asphaltene concentration, and heptane content. The results suggest that asphaltenes gradually form a cross-linked network on the interface. Increasing temperature from 23 to 60° C had no observable effect on the film lifetime and film ratio. (Abstract shortened by UMI.)
机译:本文通过测量沥青质膜在烃/水界面的流变(弹性)和机械(表皮形成)性能,研究了沥青质在稳定烃包水乳液中的作用。使用IT概念轴对称液滴形状分析仪获得弹性测量结果,该分析仪涉及在水性介质中振荡烃滴。发现总模量取决于振荡频率,沥青质浓度和溶剂组成。发现在任何给定浓度下,模量随频率单调增加。在非常低的浓度下,模量似乎是纯弹性的。在较高浓度下,随着扩散逐渐影响测量结果,出现了粘性模量,并且弹性模量下降。弹性模量和粘性模量均随着庚烷含量的增加而增加。在同一设备上以相同的流体进行的机械成膜性能(例如起皱,成膜寿命和成膜率实验)是随老化时间,沥青质浓度,溶剂组成和温度而变化的。膜的寿命随着老化时间和沥青质浓度的增加而增加,而庚烷含量没有趋势。薄膜比例随老化时间,沥青质浓度和庚烷含量的增加而增加。结果表明,沥青质在界面上逐渐形成交联网络。将温度从23℃升高至60℃对膜寿命和膜比率没有明显影响。 (摘要由UMI缩短。)

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