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Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application 被引量:4

Determination of inner pressure for fluid inclusions by Raman spectroscopy and its application
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摘要 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 CO3^2-, S-O in SO4^2- 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. 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 CO3^2-, S-O in SO4^2- 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.
出处 《Geoscience Frontiers》 SCIE CAS 2011年第3期403-407,共5页 地学前缘(英文版)
基金 supported by Chinese Natural Science Foundation (No.40873047)
关键词 Raman spectroscopy Fluid inclusion Inner pressure Isochore line Forming temperature andpressure of minerals Raman spectroscopy Fluid inclusion Inner pressure Isochore line Forming temperature andpressure of minerals
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