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J4 ›› 2012, Vol. 18 ›› Issue (1): 174-179.

• 其他学科论文 • 上一篇    下一篇

不同成烃生物的拉曼光谱特征

鲍 芳,腾格尔,仰云峰,谢小敏,张美珍,王汝成   

  1. 1. 南京大学 地球科学与工程学院,南京 210093;
    2. 中国石化股份有限公司 石油勘探开发研究院 无锡石油地质研究所,无锡 214151
  • 收稿日期:2011-12-29 修回日期:2012-01-11 出版日期:2012-03-20 发布日期:2012-03-20
  • 通讯作者: 鲍芳,女,1981年生,博士,现从事光谱在石油地质中的应用工作; E-mail: baofang2000@sina.com
  • 作者简介:鲍芳,女,1981年生,博士,现从事光谱在石油地质中的应用工作; E-mail: baofang2000@sina.com
  • 基金资助:

    国家自然科学基金项目(40839910);中石化研究院院控项目(超显微有机岩石学分析技术与应用)资助

Raman Spectroscopic Characteristics of Different Hydrocarbon-Forming Organisms

Bao Fang, Tenger , Yang Yunfeng, Xie Xiaomin, Zhang Meizhen, Wang Rucheng    

  1. 1. School of Earth Science and Engineering, Nanjing University, Nanjing 210093, China;
    2. Wuxi Research Institute of Petroleum Geology, SINOPEC, Wuxi 214151, China
  • Received:2011-12-29 Revised:2012-01-11 Online:2012-03-20 Published:2012-03-20
  • Contact: Bao Fang, Ph.D; E-mail : baofang2000@sina.com
  • About author:Bao Fang, Ph.D; E-mail : baofang2000@sina.com

摘要:

      为了区分不同的成烃生物,本文利用拉曼光谱对烃源岩中两种常见的成烃生物,即浮游藻类和底栖藻类进行了研究。
发现不同生源有机质成烃后的拉曼光谱各具特征。G 峰与D 峰间的位移差能够指示不同成烃生物分子结构中芳环的稠合程
度,D 峰和G 峰的强度比可以反映有机质芳香结构有序度。通过对比不同成烃生物的拉曼光谱参数,发现成烃后浮游藻类
的芳环稠合程度明显小于底栖藻类,芳香结构有序度也低于底栖藻类。相同层位烃源岩中不同成烃生物的G 峰与D 峰位移
差有明显区别,即可以通过拉曼光谱检测芳环的稠合程度来区分不同的成烃生物。D 峰与G 峰强度比不仅受成熟度控制,
而且成烃生物的性质对其有重要的影响,也能作为区分不同成烃生物的参考标准。

关键词: 拉曼光谱, 成烃生物, 分子结构

Abstract:

       This study proposed a method to distinguish the bio-precursors of organic matter in hydrocarbon source rocks. Through
analysis of the Raman spectra of two common types of organisms, phytoplankton and benthic algae, in hydrocarbon source rocks, we found that the organic matter originated from different organisms have different Raman spectra characteristics. The difference in Raman shift between G-mode peak and D-mode peak normally indicates the polymerization degree of aromatic structures, and the intensity ratio of D-mode peak to G-mode peak reflects the order degree of aromatic structures. By comparing the spectra parameters of different hydrocarbon-forming organisms, we found that the polymerization degrees of the macerals originated from benthic algae are greater than those of phytoplankton as well as the order degree of phytoplankton is also greater than benthic algae. Our research shows that the difference in Raman shift between G-mode peak and D-mode peak of different hydrocarbon organisms sampled from the same layer displays significant difference. The polymerization degree of aromatic structure of organic matter can be detected by Raman spectroscopy to distinguish different organisms. Although the intensity ratio of D-mode peak to G-mode peak is not only subject to the thermal maturity of materials but also sensitive to their structure properties of bio-precursor organism, it may also serve as a reference for distinguishing different hydrocarbon-forming organisms in practice.

Key words: Raman spectroscopy, order of aromatic organic matter, hydrocarbon-forming organisms

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