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超临界CO₂通过萃取特性提高页岩油产量的分子机制

Molecular Mechanism of Supercritical CO Enhancing Shale Oil Production by Extraction Characteristics.

作者信息

Li Jiawei, Lang Yue, Li Binhui, Zhang Hong, Zhang Jinchuan, Rahman Sheikh S

机构信息

State Key Laboratory of Continental Shale Oil, Daqing 163712, China.

Daqing Oilfield Exploration and Development Research Institute, Daqing 163712, China.

出版信息

Langmuir. 2025 May 6;41(17):11147-11160. doi: 10.1021/acs.langmuir.5c01010. Epub 2025 Apr 28.

Abstract

Supercritical carbon dioxide (scCO) injection into unconventional shale oil reservoirs is a promising approach to enhancing oil recovery efficiency and mitigating greenhouse gas emissions. The complexity of the oil component and composition in shale reservoirs is attributed to depositional conditions and thermal cracking processes. Additionally, the physical characteristics of the oil components vary significantly due to their complex chemical structures and bonding types. During the CO extraction, specific oil components are selectively recovered through preferential interactions with CO. Investigating the CO extraction mechanism is necessary to improve the shale oil recovery. This study introduces an innovative method for examining CO extraction by utilizing molecules with different polarities, which capture primary subsurface properties and simulate practical underground conditions during extraction. The grand canonical Monte Carlo (GCMC) and molecular dynamics (MD) methods are employed in this work to reveal the adsorption behavior of particles with different polarities in shale reservoirs under various subsurface environments. These findings indicate that CO exhibits a preferential potential for extracting nonpolar molecules over polar ones. Furthermore, based on the dynamic parameters such as the mean square distance (MSD) and self-diffusion coefficient, which reflect particle movement during the extraction process, observe that -octane (CH) is extracted and moves as a bulk phase within nanochannels, while lysine (CHNO) remains firmly attached to shale surfaces regardless of scCO injection conditions. This work elucidates the significant impact of scCO injection in shales and provides comprehensive insights into microscopic fluid flow dynamics and recovery mechanisms at the atomic level for low-carbon energy development. Overall, this study offers valuable contributions to understanding the complex processes in shale extraction.

摘要

向非常规页岩油藏注入超临界二氧化碳(scCO₂)是提高原油采收率和减少温室气体排放的一种很有前景的方法。页岩油藏中油的成分和组成的复杂性归因于沉积条件和热裂解过程。此外,由于其复杂的化学结构和键合类型,油成分的物理特性差异很大。在CO₂萃取过程中,特定的油成分通过与CO₂的优先相互作用被选择性地回收。研究CO₂萃取机理对于提高页岩油采收率是必要的。本研究引入了一种创新方法,通过利用具有不同极性的分子来研究CO₂萃取,这些分子能够捕捉主要的地下特性并模拟萃取过程中的实际地下条件。在这项工作中,采用巨正则蒙特卡罗(GCMC)和分子动力学(MD)方法来揭示在各种地下环境下不同极性的颗粒在页岩油藏中的吸附行为。这些发现表明,CO₂对非极性分子的萃取潜力优于极性分子。此外,基于反映萃取过程中颗粒运动的诸如均方位移(MSD)和自扩散系数等动力学参数,观察到正辛烷(C₈H₁₈)在纳米通道内以整体相被萃取并移动,而赖氨酸(C₆H₁₄N₂O₂)无论scCO₂注入条件如何都牢固地附着在页岩表面。这项工作阐明了scCO₂注入对页岩的重大影响,并为低碳能源开发在原子水平上的微观流体流动动力学和采收机理提供了全面的见解。总体而言,本研究为理解页岩萃取中的复杂过程做出了有价值的贡献。

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