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In order to understand how the modification of limestone by propionic acid affects the CO 2 capture performance, limestone was modified with propionic acid in this study. A thermo-gravimetric analyzer and a dual fixed-bed reactor were employed to investigate the CO 2 capture capacity of the modified limestone during cyclic calcination/carbonation reactions. The microstructure of the...
The effects of manganese salts including Mn(NO 3 ) 2 and MnCO 3 on CO 2 capture performance of calcium-based sorbent during cyclic calcination/carbonation reactions were investigated. Mn(NO 3 ) 2 and MnCO 3 were added by wet impregnation method. The cyclic CO 2 capture capacities of Mn(NO 3 ) 2 -doped CaCO 3 ,...
This study examines the CO 2 capture behavior of KMnO 4 -doped CaO-based sorbent during the multiple calcination/carbonation cycles. The cyclic carbonation behavior of CaCO 3 doped with KMnO 4 and the untreated CaCO 3 was investigated. The addition of KMnO 4 improves the cyclic carbonation rate of the sorbent above carbonation time of 257s at each carbonation...
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