One-part alkali-activated slag binder for cemented fine tailings backfill: proportion optimization and properties evaluation

被引:0
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作者
Gengjie Zhu
Wancheng Zhu
Zhaojun Qi
Baoxu Yan
Haiqiang Jiang
Chen Hou
机构
[1] Northeastern University,Center for Rock Instability and Seismicity Research, School of Resource and Civil Engineering
[2] Shandong Gold Mining Technology Co.,Backfill Engineering Laboratory
[3] Ltd,Energy School
[4] Xi’an University of Science and Technology,Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines
[5] Northeastern University,undefined
关键词
One-part alkali-activated slag; Cemented fine tailings backfill; Strength; Fluidity; Hydration reaction; Proportion optimization;
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摘要
In this study, a one-part alkali-activated slag (AAS) composed of ground-granulated blast furnace slag, desulfurized gypsum, and hydrated lime is proposed as alternative to cement for the production of cemented fine tailings backfill (CFTB), which is an environmentally friendly binder consisting of 93.72 wt.% industrial solid waste. Results show that AAS with 67.83 wt.% slag, 25.92 wt.% desulfurized gypsum, and 6.25 wt.% hydrated lime yields the highest strength, which is 1.7–3.2 times that of ordinary Portland cement (OPC). Aside from calcium silicate hydrate gel, appreciable quantity of ettringite characterized by interlocking needles structure and high bound water is also produced during the AAS hydration process. In addition, the hydration heat of the AAS binder is 48% less than that of OPC. Moreover, CFTB made of AAS provides better workability than that of CFTB with OPC up to 20 h. The findings of this study will contribute to the production of more cost-effective, durable, and environmental-friendly cemented fine tailings backfill.
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页码:73865 / 73877
页数:12
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