4.7 Article

Direct measurement of formation and dissociation rate and storage capacity of dry water methane hydrates

Journal

FUEL PROCESSING TECHNOLOGY
Volume 92, Issue 8, Pages 1617-1622

Publisher

ELSEVIER
DOI: 10.1016/j.fuproc.2011.04.008

Keywords

Dry water; Methane gas hydrates; Methane storage; Structural characteristics

Funding

  1. National Natural Science Foundation of China [41072037]
  2. Ministry of Land and Resources' Public Benefit Research Foundation [201111026]
  3. Natural Gas Hydrate in China Sea Exploration and Evaluation Project [GZH2002002]

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Dry water (DW) has been recently demonstrated to be an effective medium for methane storage in a hydrated form. Here, a series of experiments have been carried out on dry water methane hydrates (DW-MH) to investigate their formation and dissociation rates, storage capacity and structural characteristics. The result shows that the storage capacity of MH increases at least 10% by using DW relative to using surfactants like sodium dodecyl sulfate (SDS) solution. Also, it is found that controls on pressure-temperature (P-T) condition have influences on the induction and reaction time of DW-MH formation, i.e. the induction and reaction time are much shorter when the reaction cell is cooled to similar to 3 degrees C first. On the basis of Raman spectra, the hydration number is calculated as 5.934 +/- 0.06 at different positions of the DW-MH, which suggests that the sample is very homogeneous. The dissociation process of the DW-MH sample exhibits a rapid release of methane gas at the first stage of dissociation. Although hydrate dissociation is prevented by the effect of self preservation, most methane gas has released from the hydrate, however, before the self preservation occur. (C) 2011 Elsevier B.V. All rights reserved.

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