|
Volumn 4, Issue , 2011, Pages 1494-1499
|
CO2 capture from flue gas using potassium-based dry regenerable sorbents
|
Author keywords
Attrition; Carbon dioxide; Flue gas; Sorbent; Spray dry
|
Indexed keywords
CARBON;
CATALYTIC CRACKING;
CHEMICAL REACTORS;
COST EFFECTIVENESS;
ENERGY EFFICIENCY;
FLUE GASES;
FLUES;
FLUID CATALYTIC CRACKING;
FLUIDIZATION;
FLUIDIZED BED PROCESS;
FLUIDIZED BEDS;
GASES;
GREENHOUSE GASES;
PARTICLE SIZE;
PARTICLE SIZE ANALYSIS;
POTASSIUM;
SORBENTS;
SORPTION;
SPRAY DRYING;
ATTRITION;
ATTRITION RESISTANCES;
EMERGING TECHNOLOGIES;
ENERGY EFFICIENT TECHNOLOGY;
FLUIDIZED BED REACTORS;
FLUIDIZED CATALYTIC CRACKINGS;
SORPTION CAPACITIES;
SPRAY DRYING TECHNIQUE;
CARBON DIOXIDE;
|
EID: 79955429110
PISSN: 18766102
EISSN: None
Source Type: Conference Proceeding
DOI: 10.1016/j.egypro.2011.02.016 Document Type: Conference Paper |
Times cited : (23)
|
References (10)
|