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Effect of biological pretreatment on metal extraction from flotation tailings for chloride leaching

机译:生物预处理对氯化物浸出浮选尾矿金属提取的影响

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This study focuses on investigating the extraction of gold, copper, iron, nickel, cobalt, and zinc present in the flotation tailings. The studied sample contained iron (3.56%), copper (0.09%), and gold (0.2 ppm) as major target elements, whereas cobalt (0.04%), nickel (0.03%) and zinc (0.04%) were trace elements of interest. Primarily, bioleaching with mixed acidophilic culture was applied as a pretreatment process for the recovery of nickel, cobalt, and zinc, as well as for iron removal. The effect of solid concentration (5-12.5%) in bioleaching was investigated at pH 1.8 and the temperature was kept at 32 degrees C. The highest extractions of nickel, cobalt, zinc, and iron at 5% and 7.5% solid concentrations in the bioleaching experiments were 90%, 60%, 86% and 67%, respectively. Dissolution of gold and copper was not observed. The residues from bioleaching pretreatment were applied for chemical chloride leaching to extract gold and copper into the solution. In chloride leaching, the highest extractions of copper and gold were 98% and 63%, respectively. In addition, residual nickel, cobalt, and zinc were dissolved into the solution with the extraction of 99%, 80%, and 90%, respectively. In all chloride leaching experiments, the highest extractions of iron, copper, gold, nickel, cobalt, and zinc were observed with biologically pretreated feed. Alternatively, residues from bioleaching were also subjected to conventional cyanide leaching. Dissolutions of copper, nickel, cobalt and zinc were shown to be higher in chloride solution, however, 7%-unit more of gold could be extracted by cyanidation. With these findings, it appears that the combination of biological pretreatment and chloride leaching can provide a non-toxic process for improved valuable metals extraction from low-grade tailings.
机译:本研究侧重于调查浮选尾矿中存在的金,铜,铁,镍,钴和锌的提取。所研究的样品含有铁(3.56%),铜(0.09%)和金(0.2ppm)作为主要靶元素,而钴(0.04%),镍(0.03%)和锌(0.04%)是痕量的目标元素。主要是,用混合嗜酸性培养物的生物浸出作为回收镍,钴和锌的预处理方法,以及用于去除。在pH 1.8下研究了固体浓度(5-12.5%)的生物浸出的影响,将温度保持在32℃。镍,钴,锌和铁的最高萃取,在5%和7.5%固体浓度下生物浸入实验分别为90%,60%,86%和67%。未观察到金和铜的溶解。将来自生物浸出预处理的残基用于氯化物浸出以将金和铜提取到溶液中。在氯化物浸出中,铜和金的最高萃取分别为98%和63%。此外,将残留的镍,钴和锌溶解在溶液中,分别提取99%,80%和90%。在所有氯化物浸出实验中,用生物预处理的进料观察到钢铁,铜,金,镍,钴和锌的最高提取物。或者,来自生物浸出的残基也经受常规的氰化物浸出。氯化物溶液中显示铜,镍,钴和锌的溶解,然而,通过氰化物可以提取7% - 更多的金。通过这些发现,似乎生物预处理和氯化物浸出的组合可以为改善低级尾矿的有价值金属提取提供无毒过程。

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