Keyphrases
Flue Gas
100%
CO2 Capture Technology
100%
Oxy-fuel Combustion
100%
Combustion Effects
100%
Combustion Plant
100%
Ionic Liquid
66%
Process Evaluation
33%
High Temperature
16%
Physical Properties
16%
Volume Fraction
16%
Absorption Mechanism
16%
Energy Consumption
16%
Aspen Plus
16%
Exhaust Gas
16%
Combustion Technology
16%
Evaluation Results
16%
CO2 Emission Reduction
16%
Thermal Conductivity
16%
CO2 Capture
16%
Equipment Selection
16%
Economical Method
16%
Heat of Absorption
16%
Heat Exchanger Design
16%
Aspen Plus Simulation
16%
Heat Capacity at Constant Pressure
16%
Equipment Design
16%
Desorption Efficiency
16%
Design Ability
16%
Desorption Pressure
16%
Application of Ionic Liquids
16%
Capture Energy
16%
Liquid Fuel Combustion
16%
Waste Gas
16%
Gas-liquid Ratio
16%
Material Science
Carbon Dioxide
100%
Flue Gas
100%
Ionic Liquid
83%
Desorption
33%
Density
16%
Physical Property
16%
Absorption
16%
Volume Fraction
16%
Thermal Conductivity
16%
Exhaust Gas
16%
Engineering
Flue Gas
100%
Carbon Dioxide Capture
100%
Oxyfuel Combustion
100%
Exhaust Gas
16%
Thermal Conductivity
16%
Heat Capacity
16%
Heat Exchanger Design
16%
Gas Liquid Ratio
16%
Chemical Engineering
Carbon Dioxide
100%
Carbon Dioxide Capture
100%
Desorption
50%
Thermal Conductivity
25%
Specific Heat
25%