Ikbel Mouedhen, Nassima Kemache
Concerns about global warming phenomena induced the development of research into mineral carbonation technologies, which can effectively sequester CO2 by utilizing flue gas from cement plants. This study aimed to investigate the effect of CO2 partial pressure (pCO2) on the efficiency of mineral carbonation at a pilot scale. The methodology involved conducting experiments using real flue gas from a cement plant while evaluating the influence of pCO2 and the use of raw water on carbonation efficiency. Key observations included that variations in gas composition significantly affected carbonation efficiency, while the presence of raw water did not impact the overall process efficiency. The results indicate that optimizing pCO2 is crucial for enhancing the effectiveness of mineral carbonation processes. This study contributes to the understanding of direct flue gas mineral carbonation and provides insights into the operational parameters that can influence the applicability of this technology for CO2 disposal. Further research is recommended to explore additional factors influencing the reaction kinetics and carbonate precipitation efficiency in real-world applications.
@article{7e5b698a-bd2b-46a3-90d9-037431d1ab38,
title={Effect of pCO 2 on direct flue gas miner},
author={Ikbel Mouedhen and Nassima Kemache},
year={2026},
language={en}
}TY - JOUR TI - Effect of pCO 2 on direct flue gas miner AU - Ikbel Mouedhen AU - Nassima Kemache PY - 2026 LA - en ER -
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