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Development of a laboratory test to characterise the behaviour of free gold for use in a combined flash flotation and gravity concentrator model

机译:制定实验室测试以表征游离金的性能,以用于闪速浮选和重力选矿机的组合模型

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Currently there is no process model which simulates the behaviour of gravity recoverable gold (GRG) in flash flotation unit operation. Once developed, such a flash float model could be incorporated into an existing model for gravity concentration. Together, the integrated gravity recovery-flash float model will provide a tool for predicting the recovery of GRG in a closed milling circuit using both batch centrifugal concentration and flash flotation. In order to design a flash flotation model, a reliable laboratory method to characterise the response of GRG when subjected to flash flotation conditions has been developed. This paper details the evaluation of the effects of various chemical (reagent concentrations, sulfide presence, etc.) and operational (airflow, agitation, etc.) parameters on the overall GRG recovery by lab scale flash flotation. Of the factors evaluated, free gold flotation was found to be most impacted by potassium amyl xanthate (PAX) and copper sulfate reagent levels, as well as agitation speed and sulfide mineral additions.
机译:当前,没有过​​程模型可以模拟重力浮选装置运行中重力可回收金(GRG)的行为。一旦开发完成,就可以将此类浮子模型合并到现有的重力集中模型中。综合起来,集成的重力恢复-闪蒸浮选模型将提供一种使用批处理离心浓缩和闪蒸浮选来预测封闭式磨粉回路中GRG回收的工具。为了设计闪蒸浮选模型,已开发出一种可靠的实验室方法来表征GRG在闪蒸浮选条件下的响应。本文详细介绍了各种化学物质(试剂浓度,硫化物的存在等)和操作参数(气流,搅拌等)对实验室规模闪蒸浮选所回收的全部天然气的影响。在评估的因素中,发现游离金的浮选受戊基黄原酸钾(PAX)和硫酸铜试剂水平以及搅拌速度和硫化矿物添加的影响最大。

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