Study on Extraction Valuable Metal Elements by Co-Roasting Coal Gangue with Coal Gasification Coarse Slag

Coal gangue (CG) and coal gasification coarse slag (CGCS) possess both hazardous and resourceful attributes. The present study employed co-roasting followed by H SO leaching to extract Al and Fe from CG and CGCS. The activation behavior and phase transformation mechanism during the co-roasting proce...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2023-12, Vol.29 (1), p.130
Hauptverfasser: Zhao, Jincheng, Yu, Tao, Zhang, Huan, Zhang, Yu, Ma, Lanting, Li, Jinling, Qu, Chengtun, Wang, Te
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Sprache:eng
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Zusammenfassung:Coal gangue (CG) and coal gasification coarse slag (CGCS) possess both hazardous and resourceful attributes. The present study employed co-roasting followed by H SO leaching to extract Al and Fe from CG and CGCS. The activation behavior and phase transformation mechanism during the co-roasting process were investigated through TG, XRD, FTIR, and XPS characterization analysis as well as Gibbs free energy calculation. The results demonstrate that the leaching rate of total iron (TFe) reached 79.93%, and Al achieved 43.78% under the optimized experimental conditions (co-roasting process: CG/CGCS mass ratio of 8/2, 600 °C, 1 h; H SO leaching process: 30 wt% H SO , 90 °C, 5 h, liquid to solid ratio of 5:1 mL/g). Co-roasting induced the conversion of inert kaolinite to active metakaolinite, subsequently leading to the formation of sillimanite (Al SiO ) and hercynite (FeAl O ). The iron phases underwent a selective transformation in the following sequence: hematite (Fe O ) → magnetite (Fe O ) → wustite (FeO) → ferrosilite (FeSiO ), hercynite (FeAl O ), and fayalite (Fe SiO ). Furthermore, we found that acid solution and leached residue both have broad application prospects. This study highlights the significant potential of co-roasting CG and CGCS for high-value utilization.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules29010130