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Understanding Reactive Flow in Porous Media for CO
2
Storage Applications
Shima Ghanaatian
,
Omid Shahrokhi
,
Susana Garcia
,
M. Mercedes Maroto-Valer
School of Engineering & Physical Sciences
Institute of Mechanical, Process & Energy Engineering
Institute for GeoEnergy Engineering
School of Energy, Geoscience, Infrastructure and Society
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
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2
Storage Applications'. Together they form a unique fingerprint.
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INIS
applications
100%
storage
100%
carbon dioxide
100%
porous materials
100%
sandstones
100%
computed tomography
55%
size
44%
distribution
44%
brines
44%
fluids
33%
porosity
33%
information
22%
images
22%
concentration
22%
transport
22%
rocks
22%
plugs
22%
dissolution
22%
aquifers
22%
geochemistry
22%
x-ray diffractometers
22%
scanning electron microscopy
11%
variations
11%
length
11%
cations
11%
reactivity
11%
sodium chlorides
11%
geologic formations
11%
injection
11%
fluid flow
11%
permeability
11%
energy
11%
precipitation
11%
reactors
11%
plasma
11%
minerals
11%
computerized tomography
11%
equilibrium
11%
kaolinite
11%
testing
11%
chemistry
11%
morphology
11%
reservoir rock
11%
carbonates
11%
pore structure
11%
european union
11%
quartz
11%
potassium chlorides
11%
feldspars
11%
x-ray spectroscopy
11%
rock-fluid interactions
11%
emission spectroscopy
11%
Earth and Planetary Sciences
Flow in Porous Medium
100%
Carbon Dioxide
100%
Tomography
71%
Berea Sandstone
71%
Porosity
57%
Sandstone
57%
X Ray
42%
Diffractometers
28%
Research Work
14%
Kaolinite
14%
Fluid Flow
14%
Reservoir Rock
14%
Fluid-Rock Interaction
14%
Scanning Electron Microscopy
14%
Light Emission
14%
Reactive Transport
14%
CO2 Geological Storage
14%
European Union
14%
Sodium Chloride
14%