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Two-Stage SART Process: A Feasible Alternative for Gold Cyanidation Plants with High Zinc and Copper Contents

机译:两阶段SART工艺:锌和铜含量高的金氰化厂的可行替代方案

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The SART (sulfidization, acidification, recycling, and thickening) process (SP) has been successfully implemented in gold cyanidation plants to address issues associated with high cyanide-soluble copper content ores. However, this process could produce a relatively low grade precipitate, decreasing the sale price when gold plants have high zinc and copper content in their solutions. A potential option in this case would be the use of a two-stage SART process (TSSP) to produce separate zinc and copper precipitates. The additional equipment involved with this process would increase the capital cost, thereby generating concerns about the optimal range of metal contents that could justify this option. This study presents a methodology to quantify the feasible range of Cu/Zn concentrations that would justify a two-stage SART process. The study is based on a thermodynamic model and a simple economic evaluation. Results show the TSSP is preferred when the Cu/Zn ratio ranges between 0.2 and 1.5 with copper concentration higher than 500 mg/L. The TSSP appears to be a viable option to consider for gold plants having concentrations of copper and zinc higher than 200 mg/L for both metals.
机译:SART(硫化,酸化,再循环和增稠)工艺(SP)已成功在金氰化厂中实施,以解决与氰化物可溶铜含量高的矿石有关的问题。但是,当金厂的溶液中锌和铜含量较高时,此过程可能会产生相对较低品位的沉淀物,从而降低销售价格。在这种情况下,一种潜在的选择是使用两阶段SART工艺(TSSP)来生产单独的锌和铜沉淀物。此过程涉及的附加设备会增加资本成本,从而引起人们对可能证明该选择合理的金属含量的最佳范围的担忧。这项研究提出了一种量化Cu / Zn浓度可行范围的方法,该方法将证明两阶段SART工艺是合理的。该研究基于热力学模型和简单的经济评估。结果表明,当铜/锌比在0.2和1.5之间且铜浓度高于500 mg / L时,TSSP是优选的。对于铜和锌的浓度均高于两种金属200 mg / L的金矿,TSSP似乎是一个可行的选择。

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