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CH
4
-CO
2
replacement in hydrate-bearing sediments: A pore-scale study
J. W. Jung, Juan Carlos Santamarina
Physical Sciences and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
51
Scopus citations
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Dive into the research topics of 'CH
4
-CO
2
replacement in hydrate-bearing sediments: A pore-scale study'. Together they form a unique fingerprint.
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Physics
Methane
100%
Carbon Dioxide
44%
Water
7%
High Resolution
3%
Diffusivity
3%
Gas Hydrate
3%
Gases
3%
Shapes
3%
Solid State
3%
Stability
3%
Injection
3%
Photography
3%
Coexistence
3%
Earth and Planetary Sciences
Replacement
14%
Sediment
11%
Pore Scale
7%
Investigation
7%
Time
7%
Water
7%
High Resolution
3%
Electrical Resistance
3%
Stiffness
3%
Coexistence
3%
Diffusion
3%
Show
3%
Loss
3%
Gas
3%
Shape
3%
Stability
3%
Experiment
3%
Cause
3%
Solid
3%
Monitor
3%
Injection
3%
Photography
3%
Engineering
Water
7%
High Resolution
3%
Energy Source
3%
Experimental Result
3%
Hydrate Dissociation
3%
Hydrate Formation
3%
Relative Stiffness
3%
Diffusion
3%
Fields
3%
Experiments
3%
Losses
3%
Stability
3%
Recovery
3%
Biochemistry, Genetics and Molecular Biology
Gas
7%
Rigidity
7%
Time
7%
Dissociation
3%
Facilitated Diffusion
3%
Solid
3%
Electric Resistance
3%
Energy
3%
Experiment
3%
Chemistry
Time
7%
Water Type
7%
Bearing
7%
Diffusion
3%
Electrical Resistance
3%
Gas
3%
Solid
3%
Stiffness
3%