Using laser scanning confocal microscopy combined with saturated oil experiment to investigate the pseudo in-situ occurrence mechanism of light and heavy components of shale oil in sub-micron scale

2区 工程技术 Q1 Earth and Planetary Sciences Journal of Petroleum Science and Engineering Pub Date : 2023-01-01 DOI:10.1016/j.petrol.2022.111234
Zhiye Gao , Longfei Duan , Zhenxue Jiang , Liliang Huang , Jiaqi Chang , Guowei Zheng , Zhiwei Wang , Feng An , Weihang Wei
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引用次数: 5

Abstract

The occurrence characteristics of shale oil have a significant impact on its mobility and the ultimate oil recovery. How to quantitatively characterize the occurrence and distribution characteristics of shale oil is a challenging task. Accordingly, the laser scanning confocal microscopy (LSCM) combined with saturated oil experiment is used to quantitatively characterize the pseudo in-situ occurrence characteristics of light and heavy components of shale oil in sub-micron scale in Fengcheng Formation of Mahu Sag. Furthermore, the main controlling factors of light and heavy components’ occurrence characteristics are comprehensively investigated in this study. The results show that: (1) Shale wettability significantly affects the occurrence state of shale oil. The heavy components are prone to exist on the surface of oil-wet minerals and organic matter of shale compared with light components. (2) Shale oil is relatively rich in bright laminas and the content of light components is higher in contrast to dark laminas. (3) The temperature has a greater impact on the heavy components and pressure has a multistage impact on the occurrence state of shale oil. The microscopic preferential fluid occurrence index, ΔHL, is proposed to interpret the microscopic occurrence mechanism of the light and heavy components under different pressure conditions, which provides a new perspective on the shale oil occurrence mechanism. (4) Shale oil is not easy to be enriched in dolomitic lumps and alkaline minerals due to their low pore development level. Overall, the outcomes of this study are of great significance to the understanding of shale oil enrichment mechanism.

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利用激光扫描共聚焦显微镜结合饱和油实验研究亚微米级页岩油轻、重组分的伪原位生成机制
页岩油的产状特征对其流动性和最终采油率有着重要影响。如何定量表征页岩油的产状和分布特征是一项具有挑战性的任务。因此,采用激光扫描共聚焦显微镜(LSCM)结合饱和油实验,定量表征了马湖凹陷丰城组亚微米级页岩油轻、重组分的伪原位产状特征。此外,本研究还全面探讨了轻、重组分赋存特征的主要控制因素。结果表明:(1)页岩润湿性显著影响页岩油的赋存状态。与轻组分相比,重组分容易存在于页岩的油湿矿物和有机质表面。(2) 页岩油相对富含明亮的薄片,与深色薄片相比,轻质成分的含量更高。(3) 温度对重组分的影响较大,压力对页岩油的赋存状态有多阶段的影响。提出了微观优先流体赋存指数Δ∅H−L来解释不同压力条件下轻组分和重组分的微观赋存机制,为研究页岩油赋存机制提供了新的视角。(4) 页岩油由于孔隙发育水平低,不易富集白云质块状物和碱性矿物。总体而言,本研究成果对理解页岩油富集机制具有重要意义。
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来源期刊
Journal of Petroleum Science and Engineering
Journal of Petroleum Science and Engineering 工程技术-地球科学综合
CiteScore
11.30
自引率
0.00%
发文量
1511
审稿时长
13.5 months
期刊介绍: The objective of the Journal of Petroleum Science and Engineering is to bridge the gap between the engineering, the geology and the science of petroleum and natural gas by publishing explicitly written articles intelligible to scientists and engineers working in any field of petroleum engineering, natural gas engineering and petroleum (natural gas) geology. An attempt is made in all issues to balance the subject matter and to appeal to a broad readership. The Journal of Petroleum Science and Engineering covers the fields of petroleum (and natural gas) exploration, production and flow in its broadest possible sense. Topics include: origin and accumulation of petroleum and natural gas; petroleum geochemistry; reservoir engineering; reservoir simulation; rock mechanics; petrophysics; pore-level phenomena; well logging, testing and evaluation; mathematical modelling; enhanced oil and gas recovery; petroleum geology; compaction/diagenesis; petroleum economics; drilling and drilling fluids; thermodynamics and phase behavior; fluid mechanics; multi-phase flow in porous media; production engineering; formation evaluation; exploration methods; CO2 Sequestration in geological formations/sub-surface; management and development of unconventional resources such as heavy oil and bitumen, tight oil and liquid rich shales.
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