Compressive strength of manganese fine-grained material and molasses briquettes regarding binder content and curing time

Dhaffiny Rondon Gonçalves, Leandro Gustavo Mendes de Jesus
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Abstract

In the production of raw materials for the manufacture of ferroalloys, up to 50% of the material mined is discarded as fine-grained tailings. Those tailings are deposited in dams, which are considered an environmental liability. To avoid this, an alternative would be to agglomerate the tailing dam materials using the briquetting process. Therefore, this work aims to evaluate the compressive strength of briquettes made of manganese fine-grained material (with particle size < 2.00 mm) and molasses regarding curing time and percentage of binder. To achieve the objective, 45 briquettes were made with fine-grained manganese ore, with 3 different molasses content (binder), these were put into 3 weeks of curing, to analyze the impact of binder content and curing time. The result was that the longer the curing time, the better the compressive strength and that increasing binder content reduces its compressive strength. Finally, the best results were obtained with 5 % binder and 3 weeks of curing time, in which the agglomerate produced had a compressive strength of 9,0 MPa.
锰细粒材料和糖蜜压块的抗压强度与粘合剂含量和固化时间的关系
在生产用于制造铁合金的原材料时,多达 50%的开采材料会以细粒尾矿的形式被丢弃。这些尾矿被堆放在水坝中,被认为是一种环境污染。为了避免这种情况,一种替代方法是使用压块工艺对尾矿坝材料进行团聚。因此,这项工作旨在评估由锰细粒材料(粒径小于 2.00 毫米)和糖蜜制成的压块在固化时间和粘合剂比例方面的抗压强度。为了实现这一目标,使用细粒锰矿和 3 种不同糖蜜含量(粘合剂)制成了 45 块压块,并将这些压块放置 3 周进行固化,以分析粘合剂含量和固化时间的影响。结果表明,固化时间越长,抗压强度越好,而粘合剂含量的增加会降低抗压强度。最后,5% 的粘合剂和 3 周的固化时间取得了最佳效果,生产出的团聚体抗压强度达到 9.0 兆帕。
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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