Keyphrases
CO2 Sequestration
100%
Montmorillonite
100%
Kaolinite
100%
Sequestration Capacity
100%
Acid Activation
83%
Pore Volume
66%
Acid Concentration
50%
Specific Surface Area
50%
Pore Surface
33%
Clay Minerals
33%
SEM Analysis
16%
Silica
16%
Reaction Time
16%
Adsorbent
16%
Adsorption Rate
16%
Carbon Capture
16%
Adsorption Capacity
16%
Low Temperature
16%
Pore Structure
16%
Time of Concentration
16%
CO 2
16%
Acid Treatment
16%
CO2 Adsorption
16%
FTIR Analysis
16%
Grain Size
16%
High Porosity
16%
Net-zero Emissions
16%
BET Analysis
16%
Silica Content
16%
EDX Analysis
16%
Sulfuric Acid
16%
XRD Pattern
16%
Changes in Chemical Composition
16%
Global Goals
16%
Acid Reaction
16%
Clay Mineral Pores
16%
Pore Characteristics
16%
Mineral Samples
16%
Sulfuric Acid Concentration
16%
High-silica
16%
Earth and Planetary Sciences
Carbon Sequestration
100%
Montmorillonite
100%
Kaolinite
100%
Clay Mineral
100%
Surface Area
55%
Acid Activation
55%
Sulphuric Acid
22%
X Ray Diffraction
11%
Grain Size
11%
Scanning Electron Microscopy
11%
Carbon Capture and Storage
11%
Net-Zero Emissions
11%
Interlayer
11%
Porosity
11%
Material Science
Carbon Dioxide
100%
Pore Volume
100%
Aluminum
50%
Silicon Dioxide
50%
X-Ray Diffraction
25%
Energy-Dispersive X-Ray Spectroscopy
25%
Scanning Electron Microscopy
25%
Pore Structure
25%
Grain Size
25%
Phase Composition
25%
Adsorbent
25%
Engineering
CO2 Sequestration
100%
Acid Concentration
100%
Specific Surface Area
75%
Silicon Dioxide
50%
Adsorption Capacity
25%
Low-Temperature
25%
Interlayer
25%
Acid Treatment
25%
Carbon Capture and Storage
25%
Chemical Engineering
Carbon Dioxide
100%
Clay Mineral
100%
Kaolinite
100%
Sulfuric Acid
22%