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PMID: 41570018 Published · epublish English Journal Article

Mechanism and optimization of hydrocyclone-based enrichment of calcium and magnesium in fine coal gangue.

PloS one ·Vol. 21 ·No. 1 ·2026-00-00 ·页码 e0339328

Liu Z, Pan H, Song T, He Z

Abstract

Coal gangue, an industrial solid waste generated during coal mining and processing, poses significant environmental challenges due to long-term stockpiling and landfilling. Its comprehensive utilization requires not only decarbonization but also the enrichment of valuable components such as calcium and magnesium through hydrocyclone separation. In this study, the multicomponent occurrence characteristics of coal gangue were examined at the microscale, and the flow-field behavior of hydrocyclones was investigated using computational fluid dynamics (CFD). Based on these insights, a hydrocyclone enrichment system for calcium and magnesium was developed by optimizing cyclone structure and operational parameters. The raw coal gangue exhibited a high ash content (81.66%), mainly composed of Al and Si, with 2.39% Ca and 0.46% Mg. After crushing to 0-1 mm, Ca was enriched in coarse, high-density fractions, while Mg was concentrated in fine, high-density fractions. In the conventional hydrocyclone, increasing feed velocity improved pressure and tangential velocity but caused instability in the locus of zero vertical velocity (LZVV) and air-core morphology, limiting separation accuracy. The bottom-impact hydrocyclone demonstrated superior performance at an impact-tube height of 80 mm and an impact velocity of 5 m/s, achieving improved pressure distribution, higher tangential velocity, and more stable air-core symmetry. Compared with the conventional design, the optimized structure enhanced classification efficiency from 92.47% to 96.13% and increased the Ca content in the underflow to 3.53%. However, Mg separation remained limited under all tested conditions.

MeSH 主题词
Magnesium/analysis,chemistry Calcium/analysis,chemistry Coal/analysis Hydrodynamics Industrial Waste/analysis Coal Mining
化学物质
Magnesium Calcium Coal Industrial Waste
作者与单位
共 4 位作者,点击展开单位 / ORCID
Liu Zhicheng ORCID
China Coal Research Institute Co., Ltd., Xi'an, China. | Xi`an University of Science And Technology, Xi'an, China.
Pan Hao
China Coal Research Institute Co., Ltd., Xi'an, China.
Song Tianqi
China Coal Research Institute Co., Ltd., Xi'an, China.
He Zhiwei
China Coal Research Institute Co., Ltd., Xi'an, China.
Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2026-00-00
电子出版
2026-00-22
页码
e0339328
Language
English
Country/Region
United States
NLM ID
101285081
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