Study on the mechanism of decomposition of methane hydrate by the compound inhibitor. [PDF]
Zhao J, Wang Z, Zhao S, Ye H, Shen K.
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Visual Assessment of Methane Hydrate Dissociation Using a Multi-Rocking Cell: Roles of Surfactants, KHIs, and AAs in Water-Rich Systems. [PDF]
Muromachi S +5 more
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Experimental Investigation into Dissociation Characteristics of Methane Hydrate in Sediments with Different Contents of Montmorillonite Clay. [PDF]
Chen C, Zhang Y, Li X, Chen Y, Wang D.
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Prediction of methane hydrate equilibrium in saline water solutions based on support vector machine and decision tree techniques. [PDF]
Hsu CY +10 more
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Methane Hydrate-in-Oil Systems in the Presence of Natural Amino Acid-Equilibrium Phase Condition Measurements. [PDF]
Almashwali AA, Lal B, Khor SF.
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Experimental and Modeling Study on Methane Hydrate Equilibrium Conditions in the Presence of Inorganic Salts. [PDF]
Fu Q +6 more
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Methane Hydrate Structure I Dissociation Process and Free Surface Analysis. [PDF]
Duenas DC, Dunn-Rankin D, Chien YC.
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Experimental Study of the Formation Rate and Distribution of Methane Hydrate in Layered Sand. [PDF]
Wang Y +6 more
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Methane hydrate formation and decomposition
Summary: Methane hydrates, in arctic permafrost and deep ocean sediments, store vast amounts of methane, which is the primary constituent of natural gas and a potent greenhouse gas. Methane hydrate is a crystaline solid consisting of methane surrounded by frozen water mole\-cules.
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