Shenyong Li, Penghui Bo
Experiments were conducted to investigate the process of aluminum and lithium extraction from high-alumina coal fly ash (HCFA) generated from coal-fired power plants located in northern China. The presence of mullite and other aluminosilicates lead to low reactivity of coal fly ash. An activation pretreatment that destroys an inert composition of coal is necessary. The activation roasting of coal fly ash using sodium chloride and a subsequent leaching process were performed in this research. The results showed that almost no aluminum and lithium were dissolved under direct water leaching, while about 7% and 10% of those were leached into the acid solution respectively. Adding NaCl enhanced the atmospheric pressure leaching of aluminum and lithium with a leaching rate around 50%. Phase analysis and equilibrium calculations results showed that the roasting reaction between the HCFA and NaCl occurred, which led to generation of main new phase NaAlSi 3O8. The pressure extraction efficiencies of aluminum and lithium were increased to about 93% and 98%, respectively. The implications of the findings provide an alternative process for recovering aluminum and lithium from readily available high-alumina coal fly ash.
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title={2020 Li Activation Pretreatment and Leaching Process of High Alumina Coal Fly Ash to},
author={Shenyong Li and Penghui Bo},
year={2026},
language={en}
}TY - JOUR TI - 2020 Li Activation Pretreatment and Leaching Process of High Alumina Coal Fly Ash to AU - Shenyong Li AU - Penghui Bo PY - 2026 LA - en ER -
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