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Role of the porphyrins and demulsifiers in the aggregation process of asphaltenes at water/oil interfaces under desalting conditions: a molecular dynamics study

机译:脱盐条件下水/油界面在水/油界面聚集过程中的作用:分子动力学研究

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Breaking water-in-oil emulsions during the refining of crude oils is an important step before any upgrading process is started. Asphaltene molecules are incriminated as playing an important role in this phenomenon. Unraveling the mechanisms behind the affinity between them and water is a key step to understand how to break these emulsions more easily and require lower amounts of demulsifiers. Choosing which demulsifier molecule(s) to use is also primordial, but to do so rationally, one needs to know which are the molecular interactions in place between asphaltenes, porphyrins and water so that demulsifiers are chosen to destabilize a specific physical-chemical interaction. In this paper, we study the interactions arising between asphaltenes and porphyrins and six different molecules potentially displaying a demulsification action in the presence of water/oil interfaces. We demonstrate that the ionic demulsifier molecules present an interesting potential to either interact strongly with water, replacing asphaltenes in this interaction, or to interact with the active sites of asphaltenes, deactivating them and avoiding any asphaltenic interfacial activity. Finally, we also found that although asphaltenes do not migrate spontaneously toward the water/oil interfaces, porphyrins do so rather easily. This indicates that porphyrins do have an important activity at the water/oil interface.
机译:在原油精炼过程中破碎油乳液是在开始任何升级过程之前的一个重要步骤。沥青质分子被归功地在这种现象中发挥着重要作用。解开它们之间的亲和力背后的机制是了解如何更容易地打破这些乳液并且需要较少量的破乳剂的关键步骤。选择用于使用的破乳剂分子也是原始的,但是要理性地这样做,需要知道哪一个是沥青质,卟啉和水之间的分子相互作用,使得选择破乳剂以使特定的物理化学相互作用变得破坏。在本文中,我们研究了在水/油界面存在下窒息和六种不同分子之间产生的相互作用。我们证明离子破乳剂分子具有与水强烈相互作用的有趣潜力,取代该相互作用中的沥青质,或与沥青质的活性位点相互作用,使其失活并避免任何窒息界面活性。最后,我们还发现,尽管沥青质不能自发地朝向水/油界面迁移,但卟啉确实如此容易。这表明卟啉确实在水/油界面具有重要的活动。

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