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'Sticky molecules' on rock surface might play an important role in formation damage due to asphaltene deposition

机译:在岩石表面上的“粘性分子”可能在由于沥青质沉积引起的形成损伤中起重要作用

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摘要

During the production of oil asphaltenes might be deposited onto the near-wellbore area and hinder oil production. In the present study, we have extracted and characterized the organics on the surface of three reservoir rock plugs including (1) a plug from water-zone of a formation; (2) a plug from oil-zone of the same formation; (3) a water-zone plug which has been aged using the crude oil produced from the same formation in the presence of formation brine at reservoir conditions, and then the pressure has been depleted to just below asphaltene onset pressure (AOP) to introduce asphaltene deposition. The key conclusions are as followed. (1) the composition of the organics on the surface of reservoir rock and aged rock are significantly different from that of the crude oil, and these organics are likely distributed in a layered structure; (2) More importantly, it is striking to find that the organics in the first layer (bottom layer) of the reservoir rock and the aged rock are dominated with characteristic "sticky" molecules which, to our best knowledge, have not been reported in literature regarding asphaltene deposition. These special organics have multiple polar functional groups which might allow them to act as the "anchors" to bind the asphaltenes on the rock surface. This finding provides a new mechanism for the asphaltene deposition and might help to understand why asphaltenes are "sticky" when they are deposited. It is envisioned that this result could lead to new strategies to control and remediate asphaltene deposition issues.
机译:在生产石油期间,沥青质可能沉积在近井眼区域并阻碍油生产。在本研究中,我们已经提取并表征了三个储存岩插头表面的有机物,包括(1)来自地层水域的插头; (2)来自相同形成的油区的插头; (3)使用在储存条件下形成盐水存在下使用相同地层产生的原油的水区塞,然后将压力耗尽至沥青质发作压力(AOP)以引入沥青质沉积。关键的结论如下。 (1)储层岩石和老化岩石表面的有机物的组成与原油的表面有显着不同,这些有机物可能分布在层状结构中; (2)更重要的是,它醒来发现储层岩石和老化岩石的第一层(底层)中的有机物与特征“粘性”分子主导,这尚未报告关于沥青质沉积的文献。这些特殊的有机物具有多个极性官能团,其可能使它们充当“锚”,以将沥青质粘合在岩石表面上。该发现为沥青质沉积提供了一种新的机制,可能有助于理解为什么沥青质沉积时为“粘性”。设想,该结果可能导致控制和修复沥青质沉积问题的新策略。

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