CO2 uptake of modified calcium-based sorbents in a pressurized carbonation–calcination looping
CO2 uptake of modified calcium-based sorbents in a pressurized carbonation–calcination looping
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DOI:
10.1016/j.fuproc.2011.01.011
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发表时间:
2011-05
影响因子:
7.5
通讯作者:
Huichao Chen;Changsui Zhao;Minliang Chen;Yingjie Li;Xiaoping Chen
中科院分区:
文献类型:
--
作者:
Huichao Chen;Changsui Zhao;Minliang Chen;Yingjie Li;Xiaoping Chen
This study focuses on enhancing CO2uptake by modifying limestone with acetate solutions under pressurized carbonation condition. The multicycle tests were carried out in an atmospheric calcination/pressurized carbonation reactor system at different temperatures and pressures. The pore structure characteristics (BET and BJH) were measured as a supplement to the reaction studies. Compared with the raw limestone, the modified sorbent showed a great improvement in CO2uptake at the same reaction condition. The highest CO2uptake was obtained at 700°C and 0.5MPa, by 88.5% increase over the limestone at 0.1MPa after 10cycles. The structure characteristics of the sorbents on N2absorption and SEM confirm that compared with the modified sorbent, the effective pores of limestone are greatly driven off by sintering, which hinders the easy access of CO2molecules to the unreacted-active sites of CaO. The morphological and structural properties of the modified sorbent did not reveal significant differences after multiple cycles. This would explain its superior performance of CO2uptake under pressurized carbonation. Even after 10cycles, the modified sorbent still achieved a CO2uptake of 0.88.