Mechanical and Microstructural Response of Iron Ore Tailings under Low and High Pressures Considering a Wide Range of Molding Characteristics

Mining Pub Date : 2023-11-18 DOI:10.3390/mining3040039
G. Bruschi, Carolina Pereira Dos Santos, Hugo Carlos Scheuermann Filho, Camila da Silva Martinatto, Luana Rutz Schulz, J. P. Silva, N. Consoli
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Abstract

The dry stacking of filtered tailings is an option to deal with safety-related issues involving traditional slurry disposition in impoundments. Filtered tailings can be compacted to pre-define design specifications, which minimizes structural instability problems, such as those related to liquefaction. Yet, comprehending the tailing’s response under various stress states is essential to designing any dry stacking facility properly. Thus, the present research evaluated the mechanical response of cemented and uncemented compacted filtered iron ore tailings, considering different molding characteristics related to compaction degree and molding moisture content. Therefore, a series of one-dimensional compression tests and consolidated isotropically drained triaxial tests (CID), using 300 kPa and 3000 kPa effective confining pressures, were carried out for different specimens compacted at various molding characteristics. In addition, changes in gradation owing to both compression and shearing were evaluated using sedimentation with scanning electron microscope tests. The overall results have indicated that the 3% Portland cement addition enhanced the strength and stiffness of the compacted iron ore tailings, considering the lower confining pressure. Nevertheless, the same was not evidenced for the higher confining stress. Moreover, the dry-side molded specimens were initially stiffer, and significant particle breakage did not occur owing to one-dimensional compression but only due to shearing (triaxial condition).
铁矿尾矿在低压和高压下的力学和微观结构响应(考虑多种成型特性
过滤后的尾矿干堆放是解决蓄水池中传统泥浆处置安全问题的一种选择。过滤后的尾矿可以按照预先确定的设计规范进行压实,从而最大程度地减少结构不稳定性问题,例如与液化有关的问题。然而,了解尾矿在各种应力状态下的反应对于正确设计任何干堆放设施至关重要。因此,考虑到与压实度和成型含水量有关的不同成型特征,本研究评估了水泥压实和非水泥压实过滤铁矿尾矿的机械响应。因此,研究人员使用 300 kPa 和 3000 kPa 有效约束压力,对不同成型特征下压实的不同试样进行了一系列一维压缩试验和固结等向排水三轴试验(CID)。此外,还利用沉积和扫描电子显微镜测试评估了压缩和剪切造成的级配变化。总体结果表明,考虑到较低的约束压力,添加 3% 的硅酸盐水泥可提高压实铁矿尾矿的强度和刚度。然而,在密闭压力较高的情况下,情况却并非如此。此外,干侧模压试样最初较硬,并且由于一维压缩而非剪切(三轴条件),未出现明显的颗粒断裂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.80
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