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石油-盐水-碳酸盐界面润湿性的分子尺度起源

Molecular-scale origins of wettability at petroleum-brine-carbonate interfaces.

作者信息

Fenter Paul, Qin Tianzhu, Lee Sang Soo, AlOtaibi Mohammed B, Ayirala Subhash, Yousef Ali A

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, Lemont, IL, 60439, USA.

EXPEC Advanced Research Center, Saudi Aramco, Dhahran, Saudi Arabia.

出版信息

Sci Rep. 2020 Nov 25;10(1):20507. doi: 10.1038/s41598-020-77393-4.

Abstract

Wettability control of carbonates is a central concept for enhanced petroleum recovery, but a mechanistic understanding of the associated molecular-scale chemical processes remains unclear. We directly probe the interface of calcium carbonate (calcite) with natural petroleum oil, synthetic petroleum analogues, and aqueous brines to understand the molecular scale behavior at this interface. The calcite-petroleum interface structure is similar whether or not calcite was previously exposed to an aqueous brine, and is characterized by an adsorbed interfacial layer, significant structural changes within the calcite surface, and increased surface roughness. No evidence for an often-assumed thin-brine wetting layer at the calcite-petroleum interface is observed. These features differ from those observed at the calcite-brine interface, and for parallel measurements using model synthetic petroleum mixtures (consisting of representative components, including dodecane, toluene, and asphaltene). Changes to the interface after petroleum displacement by aqueous brines are also discussed.

摘要

碳酸盐的润湿性控制是提高石油采收率的核心概念,但对相关分子尺度化学过程的机理理解仍不明确。我们直接探测碳酸钙(方解石)与天然石油、合成石油类似物和盐水之间的界面,以了解该界面处的分子尺度行为。无论方解石之前是否暴露于盐水中,方解石 - 石油界面结构都是相似的,其特征是存在吸附的界面层、方解石表面内显著的结构变化以及表面粗糙度增加。未观察到方解石 - 石油界面处常被假定的薄盐水润湿层的证据。这些特征与在方解石 - 盐水界面观察到的特征不同,并且对于使用模型合成石油混合物(由代表性成分组成,包括十二烷、甲苯和沥青质)进行的平行测量也是如此。还讨论了盐水驱替石油后界面的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09cc/7689475/e26935d4d360/41598_2020_77393_Fig1_HTML.jpg

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