Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application

Using a Diamond Anvil Cell combined with micro Raman spectroscopy, the quantitative relations among Raman shifts, pressure and temperature were obtained for the vibration of O–H in H2O–NaCl, C–O in CO32−, S–O in SO42− and C–H in n-heptane-cyclohexane. Based on the quantitative relationships obtained...

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Main Authors: Haifei Zheng, Erwei Qiao, Yuping Yang, Tiyu Duan
Format: Article
Language:English
Published: Elsevier 2011-07-01
Series:Geoscience Frontiers
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1674987111000399
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author Haifei Zheng
Erwei Qiao
Yuping Yang
Tiyu Duan
author_facet Haifei Zheng
Erwei Qiao
Yuping Yang
Tiyu Duan
author_sort Haifei Zheng
collection DOAJ
description Using a Diamond Anvil Cell combined with micro Raman spectroscopy, the quantitative relations among Raman shifts, pressure and temperature were obtained for the vibration of O–H in H2O–NaCl, C–O in CO32−, S–O in SO42− and C–H in n-heptane-cyclohexane. Based on the quantitative relationships obtained, it is possible to determine the inner pressure for single fluid inclusions and to further determine the isochore of the systems. It is not only helpful to obtain the forming temperatures and pressures of the enclosing minerals, but also to be able to provide information concerning the chemical compositions of the fluid inclusions.
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spelling doaj.art-ce1345b487ae4a02b1067838ee84c25b2023-09-02T17:52:03ZengElsevierGeoscience Frontiers1674-98712011-07-012340340710.1016/j.gsf.2011.05.002Determination of inner pressure for fluid inclusions by Raman spectroscopy and its applicationHaifei ZhengErwei QiaoYuping YangTiyu DuanUsing a Diamond Anvil Cell combined with micro Raman spectroscopy, the quantitative relations among Raman shifts, pressure and temperature were obtained for the vibration of O–H in H2O–NaCl, C–O in CO32−, S–O in SO42− and C–H in n-heptane-cyclohexane. Based on the quantitative relationships obtained, it is possible to determine the inner pressure for single fluid inclusions and to further determine the isochore of the systems. It is not only helpful to obtain the forming temperatures and pressures of the enclosing minerals, but also to be able to provide information concerning the chemical compositions of the fluid inclusions.http://www.sciencedirect.com/science/article/pii/S1674987111000399Raman spectroscopyFluid inclusionInner pressureIsochore lineForming temperature and pressure of minerals
spellingShingle Haifei Zheng
Erwei Qiao
Yuping Yang
Tiyu Duan
Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
Geoscience Frontiers
Raman spectroscopy
Fluid inclusion
Inner pressure
Isochore line
Forming temperature and pressure of minerals
title Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
title_full Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
title_fullStr Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
title_full_unstemmed Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
title_short Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
title_sort determination of inner pressure for fluid inclusions by raman spectroscopy and its application
topic Raman spectroscopy
Fluid inclusion
Inner pressure
Isochore line
Forming temperature and pressure of minerals
url http://www.sciencedirect.com/science/article/pii/S1674987111000399
work_keys_str_mv AT haifeizheng determinationofinnerpressureforfluidinclusionsbyramanspectroscopyanditsapplication
AT erweiqiao determinationofinnerpressureforfluidinclusionsbyramanspectroscopyanditsapplication
AT yupingyang determinationofinnerpressureforfluidinclusionsbyramanspectroscopyanditsapplication
AT tiyuduan determinationofinnerpressureforfluidinclusionsbyramanspectroscopyanditsapplication