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Enhancing cyclic stability and anti-sintering capacity of CaCO3-MgO sorbents for CO2 capture

CHEMICAL ENGINEERING SCIENCE [2025]
Jinbo Song, Ting Qu, Jinpeng Zhang, Yanxin Jia, Jieying Jing, Wen-Ying Li
ABSTRACT

CaCO 3 -MgO sorbents were prepared through mechanochemical methods to overcome the poor stability of MgO sorbents caused by sintering and agglomeration. The alkali metal salt-promoted MgCa5 (AMS-MgCa5) sorbent, with 5 wt% CaCO 3 doping, demonstrated the highest cycling stability, with an initial CO 2 capture capacity of 13.9 mmol/g, which stabilized at 9 mmol/g after 10 cycles, and the CO 2 capture ratio reached 77 %. The superior cycling stability of the sorbents was attributed to the existence of CaMg(CO 3 ) 2 , which enhanced the capture rate during the CO 2 chemisorption process. Additionally, the doped CaCO 3 served as an inert support, enhancing CO 2 diffusion and mass transfer, ensuring the uniform coverage of alkali metal salt on the MgO surface, and inhibiting the growth of MgO particles.

MATERIALS

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