Influence of gas composition on carbonation of quicklime granules derived from different limestone typesShow others and affiliations
2025 (English)In: Chemical Engineering Journal, ISSN 1385-8947, E-ISSN 1873-3212, Vol. 506, article id 159543Article in journal (Refereed) Published
Abstract [en]
Carbonation of quicklimes degrades their quality and can occur when process temperatures become sufficiently low. This risk can be heightened in process atmospheres containing high CO2 and steam. To assess this, carbonation experiments involving atmospheres with different CO2 concentrations and steam were performed at 700 °C on 2.5–5 mm quicklime granules derived from sedimentary and metamorphic limestones. The carbonation extents of the quicklimes derived from metamorphic limestones during the fast stage were higher, corresponding with their larger specific surface areas. However, SEM analysis revealed that these quicklimes had fine structures with relatively small pores that likely became blocked during carbonation, causing plateauing of carbonation that appeared to be mainly limited to particle surfaces. The presence of steam caused only mild enhancements in carbonation of these quicklimes. Contrastingly, the quicklimes derived from sedimentary limestones had lower specific surface areas that concurred with their thicker structures and larger pores. The carbonation extent during the initial fast stage was correspondingly lower, but carbonation progressed at a sustained rate thereafter. The resulting high carbonation extents appeared to be facilitated by the larger pore volumes available for carbonate growth, including locations inside particles. The presence of steam greatly enhanced the carbonation of these quicklimes. Overall, every quicklime exhibited high carbonation extents despite being granular-sized. Moreover, their distinctive carbonation behaviors and microstructures could be delineated by their parent limestone type. These findings should be considered when carbonation in high CO2 atmospheres may occur, e.g., during cooling in electrical lime kilns.
Place, publisher, year, edition, pages
Elsevier B.V. , 2025. Vol. 506, article id 159543
Keywords [en]
Carbonation; Granulation; Steam; CCUS; CO 2 concentration; Gas compositions; In-process; Large specific surface areas; Metamorphic limestone; Process temperature; Recarbonation; Sedimentary limestone; SEM analysis; Limestone
National Category
Earth and Related Environmental Sciences
Identifiers
URN: urn:nbn:se:ri:diva-78014DOI: 10.1016/j.cej.2025.159543Scopus ID: 2-s2.0-85216474413OAI: oai:DiVA.org:ri-78014DiVA, id: diva2:2000882
Note
Nordkalk AB, SMA Mineral AB, Heidelberg Materials Cement Sverige AB, the Ellen, Walter and Lennart Hesselman Foundation, the Swedish Mineral Processing Research Association – MinFo, the Swedish Energy Agency and Sweden’s innovation agency Vinnova are acknowledged for their project support. This project has also received funding from the European Union’s Horizon Europe research and innovation programme under Grant Agreement No 101138392.
2025-09-252025-09-252025-09-25Bibliographically approved