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Communication Dans Un Congrès Année : 2010

Compositional analysis + hydrate dissociation conditions measurements for carbon dioxide + methane + water system

Veronica Belandria
Ali Eslamimanesh
Amir H. Mohammadi
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  • PersonId : 915863
Dominique Richon
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  • PersonId : 915941

Résumé

A detailed description of an experimental "in-house" set-up based on the "static-analytic" technique with gas phase capillary sampling designed, built, and improved to measure phase equilibria (pressure, temperature, and compositions) under gas hydrate formation conditions is presented in this work. The apparatus is suitable for measurements at temperatures ranging from (233 to 373) K and pressures up to 60 MPa. It was used to study phase equilibria in the carbon dioxide + methane + water system under hydrate formation conditions. An isochoric pressure-search method was used to measure hydrate dissociation conditions. The experimental data have been compared successfully with the literature data. The compositions of the gas phase in equilibrium with the hydrate and aqueous phases were measured using gas chromatography technique and compared successfully with the literature data. The compositions of the hydrate and aqueous phases were determined by applying material balance equations. The experimental data on the compositions of the hydrate have been compared successfully with the literature data. To solve the latter equations, the Newton's numerical method coupled with the Differential Evolution optimization strategy was employed. All the aforementioned experimental data (hydrate dissociation conditions + compositions analysis) have been compared with the predictions of two thermodynamic models, namely CSMGem and HWHYD. A discussion is made on the reliabilities of the predictions of the latter models.
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Dates et versions

hal-00580840 , version 1 (29-03-2011)

Identifiants

  • HAL Id : hal-00580840 , version 1

Citer

Veronica Belandria, Ali Eslamimanesh, Amir H. Mohammadi, Pascal Théveneau, Hervé Legendre, et al.. Compositional analysis + hydrate dissociation conditions measurements for carbon dioxide + methane + water system. 2010 AIChE Annual Meeting, Nov 2010, Salt Lake City, United States. ⟨hal-00580840⟩
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