龙马溪地层页岩中有机物的分子结构特征与三维模型重建

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Jing Liu, Fuhua Shang*, Yanming Zhu*, Shike Li, Guangjun Feng and Bin Gao, 
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引用次数: 0

摘要

建立分子结构模型是研究页岩有机质孔隙特征的重要手段,对分子水平的气体储存和扩散模拟具有重要意义。利用 13C NMR、傅立叶变换红外光谱(FTIR)和 XPS,结合分峰拟合技术,定量表征了重庆市巫溪县龙马溪地层页岩中角质的芳香族结构、脂肪族结构和氧官能团的结构特征。同时,利用二维大分子结构模型构建方法,结合元素分析实验,构建了角质元的大分子结构模型。结果表明,样品的二维单分子结构模型由 2 个苯、2 个萘、1 个蒽、5 个芘、1 个吡啶和 1 个吡咯组成。C 骨架类型包括 93 个质子化芳基、39 个桥接芳基、6 个羧基、5 个烷基取代碳、2 个氧取代碳、4 个亚甲基碳和 3 个甲基。确定的二维分子结构式为 C152H82O12N2。最终的三维大分子结构模型由 14 个二维分子结构组成(结构式为 C2128H1148O168N28),密度设定为 1.77 cm3/g,压缩在边长为 3.05 nm 的立方晶胞中。最后,吸附结果表明,二氧化碳的实验吸附量小于模拟吸附量,完成了模型的验证。上述研究为确定龙马溪地层页岩中角质的分子结构提供了一种方法,可以指导龙马溪地层页岩孔隙结构特征的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular Structural Characteristics and 3D Model Reconstruction of Organic Matter in Longmaxi Formation Shale

Molecular Structural Characteristics and 3D Model Reconstruction of Organic Matter in Longmaxi Formation Shale

The establishment of molecular structure modeling is an important means to study the pore characteristics of shale organic matter and is significant for molecular-level simulations of gas storage and diffusion. Using 13C NMR, FTIR, and XPS combined with the split-peak fitting technique, the structural characteristics of the aromatic structure, aliphatic structure, and oxygen functional groups of kerogen from the shale of the Longmaxi Formation, Wuxi County, Chongqing Municipality, were quantitatively characterized. A macromolecular structure model of the kerogen was also constructed by using the 2D macromolecular structure model construction method in combination with elemental analysis experiments. The results showed that the 2D single-molecule structural model of the sample consisted of 2 benzenes, 2 naphthalenes, 1 anthracene, 5 pyrenes, 1 pyridine, and 1 pyrrole. The C skeleton types were 93 protonated arylons, 39 bridged arylons, 6 carboxylons, 5 alkyl-substituted carbons, 2 oxygen-substituted carbons, 4 methylene carbons, and 3 methylons. The established 2D molecular structure formula was C152H82O12N2. The final 3D macromolecular structure model consisted of 14 2D molecular structures (structural formula C2128H1148O168N28), with the density set to 1.77 cm3/g, compressed in a cubic cell with an edge length of 3.05 nm. Finally, the adsorption results showed that the experimental adsorption of CO2 adsorption was less than the simulated adsorption, completing the validation of the model. The above study provides a method for determining the molecular structure of kerogen in the Longmaxi Formation shale, which can guide the study of the pore structure characteristics of the Longmaxi Formation shale.

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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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