Nursaule Baatarbek, Lyazzat Mussapyrova
This study investigated the extraction of aluminum from aluminum silicate-rich coal ash from the ash-slag waste of the Almaty CHP-2 power station using microwave-assisted alkaline leaching. The high chemical stability of the quartz and mullite phases in the ash leads to high energy consumption during conventional acid–base treatment. To improve the kinetic parameters of the leaching process, amorphous graphite was therefore used as an active additive, which effectively absorbs microwave energy. The experiments were conducted in the temperature range of 50–200 ◦C, in 1–6 M NaOH solution, and over a period of 5–30 min. The amount of amorphous graphite varied between 5 and 20 wt%. Upon microwave irradiation, the graphite-free ash reached a temperature of 200 ◦C within approximately 12 min, whereas this temperature was reached in the system with 15% amorphous graphite after only 8–9 min. At low alkali concentrations (1–2 M NaOH), the aluminum transfer into solution in the graphite-free system was approximately 18%–35%. With increasing NaOH concentrations to 3–4 M, the aluminum removal efficiency increased to 38%–58%. Under the same temperature conditions, the leaching process was significantly accelerated by the addition of amorphous graphite; thus, at temperatures near 200 ◦C and in a 5–6 M NaOH solut.
@article{94fd39cd-0f83-46ef-940e-9fbeb9afdcd9,
title={2026 Baatarbek Microwave alkaline leaching of coal fly ash},
author={Nursaule Baatarbek and Lyazzat Mussapyrova},
year={2026},
language={en}
}TY - JOUR TI - 2026 Baatarbek Microwave alkaline leaching of coal fly ash AU - Nursaule Baatarbek AU - Lyazzat Mussapyrova PY - 2026 LA - en ER -
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