Evaluation of SC-CO2–brine on the micro-mechanical properties of lamina shales by micro-scratch test

IF 6.1 1区 工程技术 Q2 ENERGY & FUELS Petroleum Science Pub Date : 2024-12-01 Epub Date: 2024-07-18 DOI:10.1016/j.petsci.2024.07.017
Liu Yang , Zhao-Yang Liu , Yuan-Xun Nie , Zhen-Chuan Han , Fei Gong , Ming-Jun Li , Yan Liu
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Abstract

The mechanism of SC-CO2–brine–rock interaction (SCBRI) and its effect on the mechanical properties of shale are crucial for shale oil development and CO2 sequestration. To clarify the influence of SCBRI on the micromechanics of shale, the lamina and matrix of shale were saturated with SC-CO2–brine for 2, 4, 6, and 8 days, respectively. The micro-scratch technique was then used to measure the localized fracture toughness before and after SC-CO2–brine saturation. Combining the micro-scratch results with SEM-QEMSCAN-EDS analysis, the differences in mineral composition and mechanical properties of lamina (primarily composed of carbonate minerals) and matrix (primarily composed of clay minerals) were studied. The QEMSCAN analysis and micro-scratch results indicate distinct mineralogical compositions and mechanical properties between the lamina and the matrix. The results showed that: (1) SCBRI leads to the decrease in carbonate mineral content and the significant increase in matrix porosity and laminar cracks. In addition, the damage degree increased at saturation for 6 days. (2) SCBRI weakens the mechanical properties of shale. The scratch depth of laminar and matrix increased by 34.38% and 1.02%, and the fracture toughness decreased by 34.38% and 13.11%. It showed a trend of first increasing and then decreasing. (3) SCBRI enhances the plastic deformation behavior of shale, and the plastic index of lamina and matrix increases by 18.75% and 21.58%, respectively. These results are of great significance for evaluating the mechanical properties of shale oil and gas extraction by CO2.
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通过微划痕试验评估 SC-CO2 盐对层状页岩微机械特性的影响
sc -CO2 -盐水岩相互作用(SCBRI)机理及其对页岩力学性质的影响对页岩油开发和CO2封存至关重要。为了明确SCBRI对页岩微观力学的影响,我们对页岩层和基质分别进行了2、4、6和8天的sc - co2盐水饱和处理。然后利用微划痕技术测量sc - co2 -盐水饱和前后的局部断裂韧性。结合微划痕结果和SEM-QEMSCAN-EDS分析,研究了以碳酸盐矿物为主的层状物和以粘土矿物为主的基质在矿物组成和力学性能上的差异。QEMSCAN分析和显微划痕结果表明,层状和基体之间具有不同的矿物组成和力学性能。结果表明:(1)SCBRI导致碳酸盐矿物含量降低,基质孔隙度和层状裂缝显著增加;饱和后6 d,损伤程度有所增加。(2) SCBRI削弱了页岩的力学性能。层状和基体的划痕深度分别增加了34.38%和1.02%,断裂韧性分别下降了34.38%和13.11%。呈现先上升后下降的趋势。(3) SCBRI增强了页岩的塑性变形行为,层状和基质的塑性指数分别提高了18.75%和21.58%。这些结果对评价CO2萃取页岩油气的力学性质具有重要意义。
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来源期刊
Petroleum Science
Petroleum Science 地学-地球化学与地球物理
CiteScore
7.70
自引率
16.10%
发文量
311
审稿时长
63 days
期刊介绍: Petroleum Science is the only English journal in China on petroleum science and technology that is intended for professionals engaged in petroleum science research and technical applications all over the world, as well as the managerial personnel of oil companies. It covers petroleum geology, petroleum geophysics, petroleum engineering, petrochemistry & chemical engineering, petroleum mechanics, and economic management. It aims to introduce the latest results in oil industry research in China, promote cooperation in petroleum science research between China and the rest of the world, and build a bridge for scientific communication between China and the world.
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