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Evaluation of Chemically Treated and Lime Stabilized Gold Mine Tailings: Effect on Unconfined Compressive Strength

机译:化学处理和石灰稳定金矿尾矿评价:对非整合抗压强度的影响

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For over 200 years of gold mining, little has been done to minimize the negative impact of gold mine tailings to the environment. The overall generation of tailing by South African gold mining industry is approximately 300 million tons of slimes. This study was conducted to develop an effective chemical treatment process to reduce major heavy metals in the gold mine tailings, to stabilize the treated gold tailings with lime, to enhance its unconfined compressive strength. Two reagents were investigated namely, citric acid and oxalic acid, the concentrations were varied between 0.25 M and 0.5 M. The leaching tests were conducted at temperatures of 25, 50 and 85 °C. The Elemental, mineralogical and micrograph analysis were conducted on the raw gold mine tailing, treated tailings and stabilized tailing. The results showed a higher relative proportion of magnesium, aluminium silicon, iron and sulphate. The relative proportion for all other metals was below 1 wt%. Citric acid proved to be the best chemical reagent and the optimum results were obtained when the leaching tests were conducted at a temperature of 85 °C, with the concentration of 0.5 M. The final treated solid products had major constituents which enhances material strength development, thus silica and aluminium. Stabilising the treated tailings with 30% hydrated lime, improved the unconfined compressive strength from 1.14 MPa to 2.9 MPa.
机译:对于200多年的金矿,已经完成了很少,以尽量减少金矿尾矿对环境的负面影响。南非金矿产业的尾矿总成约为3亿吨裂泥。本研究进行了开发有效的化学处理过程,以减少金矿尾矿中的主要重金属,以稳定与石灰的经处理的金尾,以增强其不包含狭窄的抗压强度。研究了两种试剂,即柠檬酸和草酸,浓度在0.25μm和0.5米之间变化。在25,50和85℃的温度下进行浸出试验。在原始金矿尾矿,经过处理的尾矿和稳定的拖尾进行元素,矿物学和显微照片分析。结果表明,镁,硅,铁和硫酸铝相对比例更高。所有其他金属的相对比例低于1wt%。被证明是最好的化学试剂,当浸出试验在85℃的温度下进行时,获得最佳结果,浓度为0.5M。最终处理的固体产物具有增强材料强度发展的主要成分,因此二氧化硅和铝。用30%水合石灰稳定处理过的尾矿,从1.14MPa升高到2.14mPa至2.9MPa的不凝固压缩强度。

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