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首页> 外文期刊>Arabian journal of geosciences >Optimisation of binder alternative for cemented paste fill in underground metal mines
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Optimisation of binder alternative for cemented paste fill in underground metal mines

机译:粘贴粘贴粘贴替代品的优化填充地下金属矿山

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To maximise ore recovery safely and economically, a proper backfill design of required strength is imperative to facilitate extraction of adjacent stopes. Ordinary Portland cement (OPC) has a direct impact on the strength gained by the paste fill mix and is also a major contributor to the backfilling cost. This has prompted the users to go for partial replacement of OPC with readily available industrial wastes such as fly ash and jarosite to obtain a paste mix of desired strength. This paper highlights the use of a mathematical model to predict the strength requirement (unconfined compressive strength and cohesion) of self-supporting paste fill for secondary pillar extraction of stopes in metal mines. This paper also highlights extensive laboratory investigation carried out for partial replacement of OPC with fly ash and jarosite to map the changes in the strength of paste mix with time. Initially, the percentage of OPC required to achieve the designed strength was evaluated and subsequently, the percentage of OPC in the mix was replaced gradually with fly ash and jarosite. Laboratory results indicated that the strength of the paste mix increases with curing period (7, 14, 28 and 56 days) and the chemical composition of the ingredients also played a major role in strength development. The results were then compared with the required strength predicted from the model to obtain proper paste mix for existing mine's stope dimension.
机译:为了安全地和经济地最大化矿石恢复,所需强度的适当回填设计是迫切需要促进相邻的停止的提取。普通波特兰水泥(OPC)对浆料填充混合的强度直接影响,也是回填成本的主要贡献者。这促使用户使用粉煤灰和珠宝等容易获得的工业废物,促进opc的部分替代opc,以获得所需强度的粘贴混合物。本文突出了使用数学模型来预测自支撑浆料的自支撑浆料的强度要求(非束缚的抗压强度和内聚力),用于近柱萃取金属矿山的止挡。本文还介绍了广泛的实验室调查,用于用粉煤灰和珠宝物体部分更换OPC,以映射浆料强度随时间的变化。最初,评估达到设计强度所需的OPC的百分比,随后,用粉煤灰和杂体逐渐替换混合物中OPC的百分比。实验室结果表明,糊状混合物的强度随固化期增加(7,14,28和56天),成分的化学成分也在强度发展中发挥了重要作用。然后将结果与模型预测的所需强度进行比较,以获得现有矿山尺寸的适当粘贴混合物。

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