Characteristics of Direct Aqueous Carbonation Reaction Using Incinerated Ash and Industrial By-Products 


Vol. 30,  No. 2, pp. 113-122, Jun.  2024
10.7464/ksct.2024.30.2.113


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  Abstract

In order to better understand carbon dioxide recycling, the carbon dioxide capture characteristics of six different alkaline industrial by-products, including incineration ash, desulfurized gypsum, low-grade quicklime, and steelmaking slag were investigated using a laboratory-scale direct aqueous carbonation reactor. In addition to the dissolution characteristics of each sample, the main reaction structure was confirmed through thermogravimetric analysis before and after the reaction, and the reactive CaO content was also defined through thermogravimetric analysis. The carbon dioxide capture capacity and efficiency of quicklime were determined to be 473 g/kg and 86.9%, respectively, and desulfurized gypsum and incineration ash were also evaluated to be relatively high at 51.1 to 131.7 g/kg and 51.2 to 87.7%, respectively. On the other hand, the capture efficiency of steelmaking slag was found to be less than 10% due to the influence of the production and post-cooling conditions. Therefore, in order to apply the carbonation process to steelmaking slag, it is necessary to optimize the slag production conditions. Through this study, it was confirmed that the carbon dioxide capture characteristics of incineration ash, quicklime, and desulfurized gypsum are at levels suitable for carbonation processes. Furthermore, this study was able to secure basic data for resource development technology that utilize carbon dioxide conversion to produce calcium carbonate for construction materials.

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  Cite this article

[IEEE Style]

D. K. Park, S. Han, C. Choi, "Characteristics of Direct Aqueous Carbonation Reaction Using Incinerated Ash and Industrial By-Products," Clean Technology, vol. 30, no. 2, pp. 113-122, 2024. DOI: 10.7464/ksct.2024.30.2.113.

[ACM Style]

Dong Kyoo Park, Seungman Han, and Changsik Choi. 2024. Characteristics of Direct Aqueous Carbonation Reaction Using Incinerated Ash and Industrial By-Products. Clean Technology, 30, 2, (2024), 113-122. DOI: 10.7464/ksct.2024.30.2.113.