4.7 Article

Calcium oxides for CO2 capture obtained from the thermal decomposition of CaCO3 particles coprecipitated with Al3+ ions

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JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
卷 32, 期 2, 页码 307-315

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ELSEVIER SCI LTD
DOI: 10.1016/j.jeurceramsoc.2011.08.022

关键词

Limestone decomposition; Sintering; CO2 capture; Al ions; Dilatometer

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  1. DICheP

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Calcium-carbonate powders were coprecipitated with Al3+ and then decomposed in air and/or under a CO2 flux between 590 degrees C and 1150 degrees C. The data were analysed using a consecutive-decomposition-dilatometer method and the kinetic results were discussed according to the microstructure analysis done by N-2 adsorption isotherms (78 K), SEM and FT-IR measurements. Below 1000 degrees C, CaCO3 particle thermal-decomposition was pseudomorphic, resulting in the formation of a CaO grain porous network. When the CaO grains were formed, the Al3+ diffused among them, producing AlO4 groups that promoted the CaO grain coarsening and reduced O-2(-) surface sites available to CO2 adsorbed molecules to form CO32-. In pure CaO, CO32- diffused through the grain boundary, enhancing Ca2+ and O-2(-) mobility; AlO4 groups reduced CO32- penetration and CaO sintering rate. Above 1000 degrees C, the sintering rate of the doped samples exceeded that of the undoped, likely because of Al3+ diffusion in CaO and viscous flow. (C) 2011 Elsevier Ltd. All rights reserved.

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