A unified equation for calculating methane vapor pressures in the CH4–H2O system with measured Raman shifts

Author:

Lu Wanjun,Chou I-Ming,Burruss R.C.,Song Yucai

Publisher

Elsevier BV

Subject

Geochemistry and Petrology

Reference22 articles.

1. Ben-Amotz D., La Plant F., Shea D., Gardecki J., and List D. (1992) Raman studies of molecular potential energy surface changes in supercritical fluids. In Supercritical Fluid Technology; ACS Symposium Series 488 (eds. F. Bright and M. P. McNally). American Chemical Society, Washington, DC, pp. 18–30.

2. Hard fluid model for solvent-induced shifts in molecular vibrational frequencies;Ben-Amotz;J. Phys. Chem.,1993

3. Quantitatively analyzing the homogenization process of CH4–H2O fluid inclusion by laser Raman spectroscopy;Chen;Earth Sci. Frontiers,2005

4. Diamond-anvil cell observations of a new methane hydrate phase in the 100-MPa pressure range;Chou;J. Phys. Chem. A,2001

5. Chou I. M., Burruss R. C., and Lu W. J. (2005) A new optical cell for spectroscopic studies of geologic fluids at pressures up to 100MPa. In Advances in High-Pressure Technology for Geophysical Applications (eds. J. Chen, Y. Wang, T. S. Duffy, G. Shen and L. F. Dobrzhinetskaya). Elsevier, Amsterdam, pp. 475–485.

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