Formation of Natural Gas Hydrates in Marine Sediments: Gas Hydrate Growth and Stability Conditioned by Host Sediment Properties
- 25 January 2000
- journal article
- Published by Wiley in Annals of the New York Academy of Sciences
- Vol. 912 (1) , 887-896
- https://doi.org/10.1111/j.1749-6632.2000.tb06842.x
Abstract
Abstract: The stability conditions of submarine gas hydrates (methane clathrates) are largely dictated by pressure, temperature, gas composition, and pore water salinity. However, the physical properties and surface chemistry of the host sediments also affect the thermodynamic state, growth kinetics, spatial distributions, and growth forms of clathrates. Our model presumes that gas hydrate behaves in a way analogous to ice in the pores of a freezing soil, where capillary forces influence the energy balance. Hydrate growth is inhibited within fine‐grained sediments because of the excess internal phase pressure of small crystals with high surface curvature that coexist with liquid water in small pores. Therefore, the base of gas hydrate stability in a sequence of fine sediments is predicted by our model to occur at a lower temperature, and so nearer to the seabed than would be calculated from bulk thermodynamic equilibrium. The growth forms commonly observed in hydrate samples recovered from marine sediments (nodules, sheets, and lenses in muds; cements in sand and ash layers) can be explained by a requirement to minimize the excess of mechanical and surface energy in the system.Keywords
This publication has 12 references indexed in Scilit:
- Relation between Gas Hydrate and Physical Properties at the Mallik 2L-38 Research Well in the Mackenzie DeltaAnnals of the New York Academy of Sciences, 2006
- Formation of natural gas hydrates in marine sediments: 1. Conceptual model of gas hydrate growth conditioned by host sediment propertiesJournal of Geophysical Research, 1999
- A Method To Predict Equilibrium Conditions of Gas Hydrate Formation in Porous MediaIndustrial & Engineering Chemistry Research, 1999
- Dissociation Condition Measurements of Methane Hydrate in Confined Small Pores of Porous GlassThe Journal of Physical Chemistry B, 1999
- Major occurrences and reservoir concepts of marine clathrate hydrates: implications of field evidenceGeological Society, London, Special Publications, 1998
- Potentials and Their Role in Transport in Porous MediaWater Resources Research, 1996
- Gas hydrates—geological perspective and global changeReviews of Geophysics, 1993
- Thermodynamic properties and dissociation characteristics of methane and propane hydrates in 70-.ANG.-radius silica gel poresThe Journal of Physical Chemistry, 1992
- Thermoporometry.Journal of Membrane Science, 1992
- The thermodynamics of frost damage to porous solidsTransactions of the Faraday Society, 1961