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[激光拉曼光谱及其在天然气水合物研究中的应用]

[Laser Raman Spectroscopy and Its Application in Gas Hydrate Studies].

作者信息

Fu Juan, Wu Neng-you, Lu Hai-long, Wu Dai-dai, Su Qiu-cheng

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Nov;35(11):2996-3002.

Abstract

Gas hydrates are important potential energy resources. Microstructural characterization of gas hydrate can provide information to study the mechanism of gas hydrate formation and to support the exploitation and application of gas hydrate technology. This article systemly introduces the basic principle of laser Raman spectroscopy and summarizes its application in gas hydrate studies. Based on Raman results, not only can the information about gas composition and structural type be deduced, but also the occupancies of large and small cages and even hydration number can be calculated from the relative intensities of Raman peaks. By using the in-situ analytical technology, laser Raman specstropy can be applied to characterize the formation and decomposition processes of gas hydrate at microscale, for example the enclathration and leaving of gas molecules into/from its cages, to monitor the changes in gas concentration and gas solubility during hydrate formation and decomposition, and to identify phase changes in the study system. Laser Raman in-situ analytical technology has also been used in determination of hydrate structure and understanding its changing process under the conditions of ultra high pressure. Deep-sea in-situ Raman spectrometer can be employed for the in-situ analysis of the structures of natural gas hydrate and their formation environment. Raman imaging technology can be applied to specify the characteristics of crystallization and gas distribution over hydrate surface. With the development of laser Raman technology and its combination with other instruments, it will become more powerful and play a more significant role in the microscopic study of gas hydrate.

摘要

气体水合物是重要的潜在能源资源。气体水合物的微观结构表征可为研究气体水合物的形成机理以及支持气体水合物技术的开发与应用提供信息。本文系统介绍了激光拉曼光谱的基本原理,并总结了其在气体水合物研究中的应用。基于拉曼结果,不仅可以推断出气体组成和结构类型的信息,还可以根据拉曼峰的相对强度计算大、小笼的占有率甚至水合数。通过使用原位分析技术,激光拉曼光谱可用于在微观尺度上表征气体水合物的形成和分解过程,例如气体分子进入/离开其笼的包合和逸出,监测水合物形成和分解过程中气体浓度和气体溶解度的变化,以及识别研究体系中的相变。激光拉曼原位分析技术还被用于在超高压条件下确定水合物结构并了解其变化过程。深海原位拉曼光谱仪可用于对天然气水合物的结构及其形成环境进行原位分析。拉曼成像技术可用于确定水合物表面结晶和气体分布的特征。随着激光拉曼技术的发展及其与其他仪器的结合,它将变得更加强大,并在气体水合物的微观研究中发挥更重要的作用。

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