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首页> 外文期刊>Journal of Environmental Management >Lithium slag and fly ash-based binder for cemented fine tailings backfill
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Lithium slag and fly ash-based binder for cemented fine tailings backfill

机译:锂渣和粉煤灰基粘合剂,用于水泥细尾矿回填

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摘要

This research work was an exploration of the feasibility of utilizing a lithium slag (LS) and fly ash (FA)-based binder for cemented fine tailings backfill (CFTB). Extensive experiments were conducted with different combinations of LS and ordinary Portland cement (OPC), along with FA as an additive. The unconfined compressive strength (UCS), micromorphology and slump values were analyzed. The results showed that (i) the LS and FA had a significant influence on the strength of binders. The OPC-LS-FA ratio of 2:1:1 appeared to be optimal with the highest strength and was referred as the LS and FA-based binder (LFB). (ii) The LFB significantly improved the UCS of the CFTB. The UCS values of CFTB specimens curing for 7,28 and 56 days reached 0.95 MPa,2.28 MPa and 3.37 MPa, respectively, with a 10 wt% content of LFB. The strength satisfied the strength requirement of backfill for supporting the surrounding rock of stopes in the Yinshan lead-zinc mine (0.8 MPa, 2.0 MPa, 3.0 MPa). (iii) The pore-filling effect of the secondary hydration products, which was mainly produced by LFB, played a significant role in the early stage (< 7 days), while the pozzolanic activity worked mostly in the midlong period (> 28 days). (iv) The LFB reduced the slump value of CFTB slurry by 2.6%-9.4% compared with OPC when the mass concentration increased from 58% to 64%, which was acceptable to satisfy the requirements of better fluidity and less transportation resistance in the Yinshan lead-zinc mine. Therefore, the LFB could be utilized as an alternative cementitious material for CFTB, which also provides a safe and economical approach to recycle LS and FA in an underground mine.
机译:这项研究工作是对使用锂渣(LS)和粉煤灰(FA)基粘合剂用于水泥细尾矿回填(CFTB)的可行性的探索。使用LS和普通波特兰水泥(OPC)以及FA作为添加剂的不同组合进行了广泛的实验。分析了无侧限抗压强度(UCS),微观形貌和坍落度值。结果表明:(i)LS和FA对粘合剂的强度有显着影响。 OPC-LS-FA比例为2:1:1似乎是最佳的,具有最高的强度,被称为LS和FA基粘合剂(LFB)。 (ii)LFB大大改善了CFTB的UCS。固化7,28和56天的CFTB试样的UCS值分别达到0.95 MPa,2.28 MPa和3.37 MPa,LFB含量为10 wt%。该强度满足了银山铅锌矿采场围岩支护回填的强度要求(0.8 MPa,2.0 MPa,3.0 MPa)。 (iii)主要由LFB产生的二次水合产物的孔填充作用在早期(<7天)起着重要作用,而火山灰活性则主要在中长期(> 28天)起作用。 (iv)当质量浓度从58%增加到64%时,LFB与OPC相比将CFTB浆的坍落度降低了2.6%-9.4%,可以满足阴山更好的流动性和更低的运输阻力的要求铅锌矿。因此,LFB可以用作CFTB的替代胶结材料,这也为地下矿井中的LS和FA的回收提供了一种安全,经济的方法。

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