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Keyphrases
Sulfur Capture
100%
Circulating Fluidized Bed Boiler
100%
Sulfation
100%
Direct Sulfonation
100%
Oxy-fuel Circulating Fluidized Bed
100%
CO2 Atmosphere
100%
Temperature Effect
50%
Particle Model
50%
Conversion Profile
50%
Air Combustion
50%
Sulfation Pattern
50%
Degree of Conversion
50%
Fluidized Bed
50%
Indirect Sulfation
50%
Reaction Rate
50%
Core-shell
50%
Modeling Method
50%
Core-shell Structure
50%
Combustion Conditions
50%
Simultaneous Reaction
50%
Gas Atmosphere
50%
Capture Efficiency
50%
Diffusion Rate
50%
Desulfurization
50%
Number Conversion
50%
Many-particle
50%
Spent Sorbent
50%
Sorbent Particles
50%
Spectrometry Analysis
50%
N2 Atmosphere
50%
Conversion Curve
50%
INIS
fuels
100%
modeling
100%
air
100%
capture
100%
limestone
100%
sulfation
100%
sulfur
100%
circulating fluidized bed boilers
100%
atmospheres
66%
conversion
50%
carbon dioxide
50%
particles
33%
layers
16%
comparative evaluations
16%
efficiency
16%
one-dimensional calculations
16%
diffusion
16%
combustion
16%
gases
16%
fluidized bed
16%
sulfates
16%
time dependence
16%
curves
16%
particle models
16%
spectrometry
16%
desulfurization
16%
scanning (electron)
16%
Engineering
Circulating Fluidized Bed
100%
Fluidized Bed Boiler
100%
Experimental Result
100%
Test Result
100%
Air Combustion
100%
Modeling Study
100%
One Dimensional
100%
Capture Efficiency
100%
Degree of Conversion
100%
Fluidized Bed
100%
Desulphurisation
100%
Chemical Engineering
Carbon Dioxide
100%
Circulating Fluidized Bed Boiler
100%
Spectrometry
33%
Fluidized Bed
33%
Desulfurization
33%
Material Science
Carbon Dioxide
100%
Sorbent
33%