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On the interfacial properties of micrometre-sized water droplets in crude oil

机译:原油中微米级水滴的界面特性

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The remarkable stability of water-in-crude oil emulsions is due to the presence of a complex adsorbed layer at the surfaces of the dispersed droplets. Except for its role as a steric barrier, little is known about the in situ properties of this interfacial structure. In this study, new insights into the adsorbed layer are provided by direct micrometre-scale measurements. At low crude content in the bulk where, according to interfacial tension isotherms, there should be little or no surfactants on the droplet surface, the adsorbed layer displays pronounced rigidity and is capable of preventing coalescence and coagulation of the droplets. Such interfaces are highly dissipative and can be well described by the Boussinesq-Scriven model. As the supply of surface active materials in the bulk (i.e. the crude content) increases, the adsorbed layer transforms from a rigid structure to a fluid interface. This fluid layer continues to inhibit coalescence, although signs of weak interdroplet adhesion begin to appear. Under area compression, the fluid interface will discharge micrometre-sized emulsion droplets into the oil phase via a 'budding' mechanism.
机译:原油中水包油乳液的出色稳定性是由于在分散液滴表面上存在复杂的吸附层。除了其作为空间屏障的作用外,对该界面结构的原位特性知之甚少。在这项研究中,直接的微米级测量提供了对吸附层的新见解。在低的原油含量中,根据界面张力等温线,在液滴表面上应该很少或没有表面活性剂,吸附层显示出明显的刚性,并能够防止液滴的聚结和凝结。这样的接口具有很高的耗散性,可以用Boussinesq-Scriven模型很好地描述。随着散装表面活性物质(即原油含量)的增加,吸附层从刚性结构转变为流体界面。尽管开始出现微滴间粘附力减弱的迹象,但该流体层仍继续抑制聚结。在区域压缩下,流体界面将通过“萌芽”机制将微米级的乳液液滴排放到油相中。

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