摘要
To address the critical challenges of low industrial solid waste utilization, excessive CO2emissions, and land subsidence in coal mine goaf areas, this study developed an innovative solid waste-based backfill material (SFC) through CO2-activated curing of steel slag, fly ash, and coal gangue (CG). The research systematically evaluated the SFC slurry’s flow characteristics, carbon sequestration capacity, and mechanical strength following CO2curing. The results indicate that the slurry yield stress and thixotropy initially increase and subsequently decrease with the rising CG content. Among the tested formulations, SFC5 exhibits the highest yield stress (171 Pa) and thixotropic hysteresis area (11,198 Pa/s). Nevertheless, all SFC formulations meet the minimum flowability requirements for underground mine backfilling applications. Besides, both carbon sequestration efficiency and compressive strength increase with extended curing age, whereas at 21 days of CO2-activated curing, these properties decrease with rising CG content. Significantly, all formulations except SFC20 exceed the 6 MPa threshold required for mine backfill applications. And when the utilization of CG is considered, SFC15 is the optimal material combination that achieves the best balance of flowability, carbon sequestration, and strength properties. This study develops an SFC backfill material that complies with mine backfill specifications, establishing a scientific basis for integrated management of coal-metallurgical solid wastes and CO2sequestration.
| 源语言 | 英语 |
|---|---|
| 页(从-至) | 17990-18000 |
| 页数 | 11 |
| 期刊 | Energy and Fuels |
| 卷 | 39 |
| 期 | 37 |
| DOI | |
| 出版状态 | 已出版 - 18 9月 2025 |
| 已对外发布 | 是 |
联合国可持续发展目标
此成果有助于实现下列可持续发展目标:
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可持续发展目标 12 负责任消费和生产
学术指纹
探究 'Flowability, Carbon Sequestration, and Strength Properties of Carbonation-Cured Solid Waste-Based Backfilling Materials' 的科研主题。它们共同构成独一无二的学术指纹。引用此
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