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Thermodynamical studies of irreversible sorption of CO2 by Wyodak coal
M. Mirzaeian, P.J. Hall
Chemical And Process Engineering
Research output
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Contribution to journal
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Article
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peer-review
11
Citations (Scopus)
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Dive into the research topics of 'Thermodynamical studies of irreversible sorption of CO2 by Wyodak coal'. Together they form a unique fingerprint.
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Physics
Adsorption
16%
Carbon Dioxide
100%
Carbon Dioxide
8%
Coal
100%
Desorption
41%
Diffusion
4%
Dissolved Gas
4%
Gases
4%
Glass Transition Temperature
4%
Heating
4%
High Pressure
12%
Increasing
4%
Mass Spectroscopy
8%
Matrix
4%
Model
4%
Molecules
12%
Pressure
16%
Small-Angle Neutron Scattering
8%
Sorption
100%
Temperature
16%
Value
4%
Chemistry
Amount
8%
Carbon Dioxide
8%
Chemical Kinetics Characteristics
4%
Coal
100%
Desorption Mass Spectrometry
8%
Differential Scanning Calorimetry
37%
Diffusion
4%
Energy
4%
First Order
4%
Gas
8%
Glass Transition Temperature
4%
Heating
4%
Molecule
12%
Pressure
29%
Reaction Activation Energy
8%
Reaction Temperature
16%
Small Angle Neutron Scattering
8%
Sorption
100%
Surface
8%
Material Science
Activation Energy
16%
Adsorption
66%
Coal
100%
Coal Structure
8%
Gas
8%
Glass Transition Temperature
4%
Kinetic Order
8%
Mass Spectrometry
8%
Temperature
16%
Engineering
Dissolved Gas
4%
Chemical Engineering
Superconducting Transition Temperature
4%