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Mechanism of asphaltene aggregation induced by supercritical CO2: insights from molecular dynamics simulation

机译:超临界CO 2 引起的沥青质聚集机理:分子动力学模拟的启示

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The mechanisms of asphaltene aggregation leading to damage and wellbore plugging are still unknown, which is not conducive to finding effective solutions to the relevant problems of asphaltene precipitation in supercritical CO2 (scCO2) enhanced oil recovery processes. Therefore, molecular dynamics simulations were performed on an oil–scCO2 system to investigate the behavior and mechanism of asphaltene aggregation. The results show that the selective extraction of crude oil in scCO2 leads to the formation of asphaltene nanoaggregates. The vdW interactions among asphaltenes in scCO2 are stronger than those under vacuum, which aggravates aggregation. Free energy calculations indicate that the remaining binding energy between asphaltenes in scCO2 is the driving force of asphaltene aggregation. Interestingly, we observed a two-step process of separation and aggregation for asphaltene nanoaggregates, which demonstrates that the efficiency of inhibiting asphaltene aggregation can be improved by adding an inhibitor in the first step of aggregation in scCO2 flooding.
机译:沥青质聚集导致破坏和井筒堵塞的机理仍是未知的,这不利于找到有效解决超临界CO 2 (scCO)中沥青质沉淀相关问题的方法。 2 )增强了采油工艺。因此,在油–scCO 2 系统上进行了分子动力学模拟,以研究沥青质聚集的行为和机理。结果表明,在scCO 2 中选择性提取原油会导致沥青质纳米聚集体的形成。 scCO 2 中的沥青质之间的vdW相互作用要强于真空条件下的vdW相互作用,这会加剧聚集。自由能计算表明,scCO 2 中沥青质之间的剩余结合能是沥青质聚集的驱动力。有趣的是,我们观察到了沥青质纳米聚集体的分离和聚集两步过程,这表明在scCO 2 的第一步中添加抑制剂可以提高抑制沥青质聚集的效率。 sub> 泛滥。

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