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Recent Developments on the Elucidation of Colloidal Aspects of Asphaltenes and Their Relevance to Oilfield Problems

机译:浅谈沥青中胶体方面的发展及其与油田问题的相关性

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Asphaltenes constitute the heavy petroleum fraction responsible for deposition events that may lead to reduced oil production, therefore of great interest for flow assurance. These molecules self-assemble in solutions leading to formation of aggregates that eventually grow towards precipitation and blockages in reservoirs and pipelines. Based on the Yen-Mullins aggregation model, two complementary scenarios are involved in asphaltenes phase behavior: one called thermodynamic, in which interacting molecules and other species can be assumed to be in equilibrium, and a second one, involving interacting colloidal particles, both being described by different theoretical frameworks. For the first, molecular interactions can explain the experimental observations or theoretical models. For the second stage, colloidal forces such as those described by Derjaguin, Landau, Verwey and Overbeek (DLVO) theory, steric particle stabilization and diffusion or reaction limited aggregation processes might control the process. Our evaluation is that this second approach is underrepresented in the current literature. For this reason, this review focuses on describing evidences for the presence of colloidal particles in crude oils obtained with different experimental techniques, drawing attention to this important attribute and we raise a few questions that we believe must be addressed in order to better understand the contributions from colloidal aspects.
机译:沥青质构成负责沉积事件的重型石油级分,这可能导致石油生产降低,因此对流动保证有着极大的兴趣。这些分子在溶液中自组装,导致骨料形成,最终生长在储层和管道中的降水和堵塞。基于Yen-Mullins聚集模型,两种互补场景涉及沥青型相位行为:一种称为热力学,其中可以假设相互作用分子和其他物质在平衡,第二种,涉及相互作用的胶体颗粒由不同的理论框架描述。对于第一,分子相互作用可以解释实验观察或理论模型。对于第二阶段,诸如Derjaguin,Landau,Verwey和Ovebeek(DLVO)理论描述的胶体力,空间粒子稳定和扩散或反应限制聚集过程可能会控制该过程。我们的评价是,这一第二种方法在目前的文献中经历了不足。出于这个原因,本综述重点是描述用不同实验技术获得的原油中胶体颗粒存在的证据,提请注意这一重要属性,我们提出了一些我们相信必须解决的问题,以便更好地了解贡献来自胶体方面。

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