This research aims to explore the capabilities of aluminum-based metal-organic frameworks for capturing trace SO2 from flue gas effectively and reversibly.
Developed aluminum-based metal-organic frameworks for SO2 capture.
Tested the selectivity and reversibility of the sorbents at varying conditions.
Analyzed the efficiency of the sorbents in desulfurization processes.
Achieved a high selectivity for SO2 compared to other gases.
Demonstrated reversible capture with minimal performance loss after multiple cycles.
Showed scalability potential for practical applications in flue gas treatment.
Abstract
The desulfurization of flue gas requires sorbents capable of selective and reversible SO