Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/10875
Title: Direct mineral carbonation of fly ash under high pressure using acid mine drainage: effects of solid-to-liquid ratio, stirring speed and CO2 pressure
Authors: Zide, Sibulele 
Ho, Hsing-Jung 
Iizuka, Atsushi 
Petersen, Jochen 
Vadapalli, Viswanath Ravi Kumar 
Petrik, Leslie 
Ojumu, Tunde 
Keywords: Calcium carbonate content;carbon capture;Utilization;Storage;CO2 uptake capacity;direct carbonation
Issue Date: 2025
Publisher: Wiley
Source: Zide, S. et al. 2025. Direct mineral carbonation of fly ash under high pressure using acid mine drainage: effects of solid-to-liquid ratio, stirring speed and CO2 pressure. Environmental Progress & Sustainable Energy, 44(2): 1-12. [https://doi.org/10.1002/ep.14545]
Journal: Environmental Progress & Sustainable Energy 
Abstract: CO2 emissions contributing to global warming and waste related to energy genera-tion using coal pose an issue in developing countries. Mineral carbonation (MC) offly ash (FA) using acid mine drainage (AMD) can reduce CO 2 and the negative envi-ronmental impact of FA including AMD from coal mining activity. The present studyexamined the direct carbonation (DC) of FA using pure water and AMD in a 600 mLautoclave pressure reactor. A preliminary study was conducted to observe theleaching behavior of FA in water and AMD. DC was conducted to determine theeffect of solid-to-liquid ratio (0.2 and 0.5 g mL 1 ), stirring speed (100 and 400 rpm)and CO 2 pressure (1–4 MPa) on the carbonation performance. The maximum cal-cium carbonate content in the carbonated FA was 4.33 wt% with a 60% conversionof calcium to CaCO 3 for DC with pure water. The electricity required by the pro-cess was 18.9 kWh t 1 -CO 2 , corresponding to 0.019 t-CO 2 emitted t 1 -CO 2 fixedin FA. DC using AMD was effective and the maximum CaCO 3 content in FA was6.68 wt%. This was due to the additional calcium content and enhanced calciumextraction provided by AMD. The actual CO 2 uptake capacity was 29.4 g-CO 2 kg 1fly ash. Studies on AMD as a reaction solvent for MC are few but can improve thecarbonation performance of FA. Hence, the method can be viable for mining indus-tries to mitigate negative environmental impacts and generate additional revenuethrough carbon credits.
URI: http://hdl.handle.net/11189/10875
ISSN: 1944-7442
1944-7450 (Online)
DOI: https://doi.org/10.1002/ep.14545
Appears in Collections:Eng - Journal articles (DHET subsidised)

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