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Problematic stabilizing films in petroleum emulsions: shear rheological response of viscoelastic asphaltene films and the effect on drop coalescence.

机译:在石油乳液中有问题的稳定薄膜:粘弹性沥青质薄膜的剪切流变响应和对液滴聚结的影响。

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摘要

Adsorption of asphaltenes at the water-oil interface contributes to the stability of petroleum emulsions by forming a networked film that can hinder drop-drop coalescence. The interfacial microstructure can either be liquid-like or solid-like, depending on (i) initial bulk concentration of asphaltenes, (ii) interfacial aging time, and (iii) solvent aromaticity. Two techniques--interfacial shear rheology and integrated thin film drainage apparatus--provided equivalent interface aging conditions, enabling direct correlation of the interfacial rheology and droplet stability. The shear rheological properties of the asphaltene film were found to be critical to the stability of contacting drops. With a viscous dominant interfacial microstructure, the coalescence time for two drops in intimate contact was rapid, on the order of seconds. However, as the elastic contribution develops and the film microstructure begins to be dominated by elasticity, the two drops in contact do not coalescence. Such step-change transition in coalescence is thought to be related to the high shear yield stress (~10(4) Pa), which is a function of the film shear yield point and the film thickness (as measured by quartz crystal microbalance), and the increased elastic stiffness of the film that prevents mobility and rupture of the asphaltene film, which when in a solid-like state provides an energy barrier against drop coalescence.
机译:沥青质在水-油界面上的吸附通过形成网状薄膜而阻碍了液滴的聚结,从而有助于石油乳液的稳定性。界面微观结构可以是液体状或固体状,这取决于(i)沥青质的初始体积浓度,(ii)界面老化时间和(iii)溶剂芳香性。两种技术-界面剪切流变学和集成的薄膜排水设备-提供了等效的界面老化条件,从而使界面流变学和液滴稳定性直接相关。发现沥青质膜的剪切流变性质对接触液滴的稳定性至关重要。具有粘性的主要界面微观结构,两滴紧密接触的聚结时间很快,大约为几秒钟。但是,随着弹性作用的发展以及薄膜的微观结构开始受弹性支配,两个接触液滴不会聚结。聚结中的这种阶跃变化过渡被认为与高剪切屈服应力(〜10(4)Pa)有关,这是膜剪切屈服点和膜厚度(通过石英晶体微量天平测量)的函数,膜的弹性刚度增加,阻止了沥青质膜的迁移和破裂,当处于固态时,它提供了防止液滴聚结的能量屏障。

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