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Dynamic Asphaltene-Resin Exchange at the Oil/Water Interface: Time-Dependent W/O Emulsion Stability for Asphaltene/Resin Model Oils

机译:油/水界面的动态沥青质 - 树脂交换:沥青质/树脂模型油的时间依赖性W / O乳液稳定性

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The critical electric field (CEF) technique was used to determine the time-dependent stability of water-in-oil emulsions in which asphaltenes stabilize the film. Stabilizing films comprising purely asphaltenes were observed to increase monotonically in stability with time. However, in the presence of resins, particularly in mass ratios of resins to asphaltenes of 0.5-1.0, the stability of the emulsions as probed by CEF were observed to exhibit a very sharp local maximum. Similar behavior was observed in dilatational interfacial rheology experiments using an oscillating drop tensiometer. The dilatational modulus (ε) for the stabilizing film, as obtained from the variation of interfacial tension with interfacial area, of an aging asphaltene/resin model oil droplet in water exhibited a time-dependent local maximum. Values of ε were nominally lower for asphaltene/ resin model oil systems than asphaltene model oil systems, qualitatively similar to CEF trends. These observed phenomena are similar to the "Vroman effect", observed in competitive protein adsorption. One plausible explanation is that resin-solvated asphaltenic aggregates are able to diffuse and adsorb to the interface more quickly than larger pure asphaltenic aggregates, but then a molecular rearrangement occurs in which resins become the primary adsorbent in the monolayer by reptation through the consolidated asphaltene network, displacing the asphaltenes and reducing the stability and the dilatational elasticity.
机译:临界电场(CEF)技术用于确定油内乳液的时间依赖性稳定性,其中沥青质稳定薄膜。观察到包含纯粹沥青质的稳定薄膜随时间单调稳定性增加。然而,在树脂存在下,特别是在树脂的质量比为0.5-1.0的沥青中,观察到由CEF探测的乳液的稳定性表现出非常尖锐的局部最大值。使用振荡下降张力计在扩张界面流变学实验中观察到类似的行为。稳定膜的扩张模量(ε)与界面张力的界面张力的变化中的变化,在水中的老化沥青质/树脂模型油液滴中的介质张力张力呈现出时间依赖性局部最大值。对于沥青质/树脂模型油系统的ε的值标称低于沥青质模型石油系统,与CEF趋势类似。这些观察到的现象类似于在竞争性蛋白质吸附中观察到的“vroman效应”。一种合理的解释是树脂溶剂化的沥青质聚集体能够比较大的纯沥青质聚集体更快地扩散并吸附到界面上,但是发生分子重排,其中通过通过综合的沥青质网络通过重新开始于单层中的原色吸附剂。 ,置换沥青质并降低稳定性和膨胀性弹性。

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