An Investigation of the Mechanical and Durability Properties of Hollow Concrete Blocks Made with Copper Mine Tailings as a Partial Cement Replacement

Jacques Ndikumana, J. R. Kashinga, G. S. Kumaran, Enzoh Langi
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Abstract

The increase in copper productivity in Zambia has resulted in the expansion of disposal areas occupied by mineral wastes and tailings. This not only consumes land but also, due to insufficient management, poses negative environmental impacts and health risks to people. Therefore, efficient and sustainable approaches for the proper management of these waste materials must be developed. In this study, the potential utilization of copper mine tailings was assessed. After analyzing the physical and chemical properties of copper mine tailings from Kitwe Tailings Dam (TD25), hollow concrete block specimens were prepared. Copper mine tailings were used as a partial replacement for cement in the mix design, with replacement ratios as follows: 0% for CBCMT O% (control specimen), 10% for CBCMT1O%, 20% for CBCMT2O%, 30% for CBCMT3O%, 40% for CBCMT4O%, and 50% for CBCMT5O%, all aimed at achieving a target strength of 5 MPa. Specimen compressive strength was evaluated, and it was found that CBCMT1O% and CBCMT2O% achieved the target compressive strength at 28 days of age. Water absorption rates and resistance to acid attack were also assessed. Findings revealed that all specimens outperformed the control specimen in terms of these properties. Furthermore, the environmental feasibility of the hollow concrete blocks specimens was examined, and the results showed limited leaching of heavy metals from the specimens, with concentrations within permissible thresholds. Additionally, a statistical analysis was conducted to study the influence cell shape has on the specimens’ compressive strength. Aimed at identifying the optimal specimen type for achieving compressive strength at an early age, results indicated that cell shape had a significant impact on the 28-day age of hollow concrete blocks. The study proposes a novel copper mine tailings (waste) management approach, by utilizing the potential it has to replace cement in the production of hollow concrete blocks, evident from the observed enhancement of the mechanical and durability properties.
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使用铜矿尾矿作为部分水泥替代品制作的混凝土空心砌块的力学性能和耐久性能研究
赞比亚铜矿生产率的提高导致矿产废料和尾矿处理区域的扩大。这不仅消耗了土地,而且由于管理不善,还对环境造成了负面影响,对人们的健康造成了威胁。因此,必须开发高效、可持续的方法来妥善管理这些废料。本研究评估了铜矿尾矿的潜在利用价值。在分析了基特韦尾矿坝(TD25)铜矿尾矿的物理和化学特性后,制备了空心混凝土块试样。在混合设计中,铜矿尾矿被用作水泥的部分替代品,替代比例如下:CBCMT O%为 0%(对照试样)、CBCMT1O%为 10%、CBCMT2O%为 20%、CBCMT3O%为 30%、CBCMT4O%为 40%、CBCMT5O%为 50%,目的是达到 5 兆帕的目标强度。对试样抗压强度进行了评估,发现 CBCMT1O% 和 CBCMT2O% 在 28 天龄期时达到了目标抗压强度。此外,还评估了吸水率和耐酸侵蚀性。结果显示,所有试样在这些性能方面都优于对照试样。此外,还对空心混凝土砌块试样的环境可行性进行了研究,结果表明试样中的重金属沥滤有限,浓度在允许阈值范围内。此外,还进行了统计分析,以研究单元形状对试样抗压强度的影响。结果表明,细胞形状对空心混凝土砌块的 28 天龄期有显著影响,其目的是确定最佳试样类型,以便在较早龄期获得抗压强度。这项研究提出了一种新的铜矿尾矿(废物)管理方法,利用其在空心混凝土砌块生产中替代水泥的潜力,从观察到的机械性能和耐久性能的提高中可见一斑。
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