2021•Journal of Chemical & Engineering DataRequires access

Growth Mechanisms and Phase Equilibria of Propane and Methane + Propane Hydrates

Sebastian Ovalle, Juan G. Beltrán

Open publisher page 14 citations

Abstract

Gas hydrates of light hydrocarbons exhibit complex phase behavior, polymorphism, and diverse crystal morphology. We investigated phase equilibria and growth mechanisms of propane and methane + propane gas hydrates in the range of 0.25 to 2.1 MPa and 273.6 to 287.25 K. Clathrates formed from pure propane and the y CH 4 = 0.90 methane + propane mixture exhibited similar morphologies at low subcoolings but differed considerably at higher subcoolings. The y CH 4 = 0.98 methane + propane mixture formed crystals with radically different morphologies than those of pure propane and the y CH 4 = 0.90 mixture. We report a new hydrate growth mechanism that proceeds via partial dissociation of the growing crystal in propane and propane + methane hydrates.

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Gas hydrates of light hydrocarbons exhibit complex phase behavior, polymorphism, and diverse crystal morphology. We investigated phase equilibria and growth mechanisms of propane and methane + propane gas hydrates in the range of 0.25 to 2.1 MPa and 273.6 to 287.25 K. Clathrates formed from pure propane and the y CH 4 = 0.90 methane + propane mixture exhibited similar morphologies at low subcoolings but differed considerably at higher subcoolings. The y CH 4 = 0.98 methane + propane mixture formed crystals with radically different morphologies than those of pure propane and the y CH 4 = 0.90 mixture. We report a new hydrate growth mechanism that proceeds via partial dissociation of the growing crystal in propane and propane + methane hydrates.

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Available abstract

Gas hydrates of light hydrocarbons exhibit complex phase behavior, polymorphism, and diverse crystal morphology. We investigated phase equilibria and growth mechanisms of propane and methane + propane gas hydrates in the range of 0.25 to 2.1 MPa and 273.6 to 287.25 K. Clathrates formed from pure propane and the y CH 4 = 0.90 methane + propane mixture exhibited similar morphologies at low subcoolings but differed considerably at higher subcoolings. The y CH 4 = 0.98 methane + propane mixture formed crystals with radically different morphologies than those of pure propane and the y CH 4 = 0.90 mixture. We report a new hydrate growth mechanism that proceeds via partial dissociation of the growing crystal in propane and propane + methane hydrates.

Key concepts: Propane, Methane, Clathrate hydrate, Hydrate, Dissociation (chemistry), Chemistry, Phase (matter), Hydrocarbon

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