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A Practical Approach to Solving Metallurgical Problems Within a Concentrator Using Chemistry

机译:用化学解决集中器内冶金问题的实用方法

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The paper provides a structured methodology to investigate metallurgical problems within the operating concentrators. The strategy uses classical metallurgical data analysis as well as pulp, solution and surface analysis to determine the reasons for particular behaviours. The approach applies equally to all mineral-processing operations. To demonstrate its effectiveness a case study, based on work conducted at Pasminco Rosebery Mine, is described. In this work, the classical metallurgical analysis indicated that a significant amount of sphalerite reporting to the lead concentrate occurred as liberated particles. A combination of pulp, solution and surface analysis supported the hypothesis that the liberated sphalerite was recovered by inadvertent activation by lead ions. Laboratory studies have indicated that the use of sodium carbonate, by itself and in combination with zinc sulphate and sodium cyanide, when added to the lead regrinding mill can depress sphalerite flotation, resulting in an improvement in the lead grade/recovery curve. When this approach was tested in the plant other more dominant issues masked any positive effect the addition of sodium carbonate may have had. The plant trial highlighted the real need for additional regrinding capacity.
机译:本文提供了一个结构化的方法来调查工作集中的冶金问题。该策略使用经典冶金数据分析以及纸浆,溶液和表面分析来确定用于特定行为的原因。这种方法同样适用于所有的矿物处理操作。为了证明其有效性的案例研究的基础上,在帕斯明克Rosebery矿山开展工作,进行说明。在这项工作中,传统的冶金分析表明,闪锌矿报告的铅精矿一个显著发生额作为解放颗粒。浆,溶液和表面分析的组合支持的假设,即所释放的闪锌矿回收由意外激活由铅离子。实验室的研究表明,通过本身以及当加入到铅重磨磨机,具有硫酸锌和氰化钠组合,使用碳酸钠,可以抑制闪锌矿浮选,从而导致在引线级/恢复曲线的改进。当这种方法在工厂测试其他更占优势的问题掩盖任何积极的效果加入碳酸钠可能有。该工厂试验突出了额外的重磨能力的实际需要。

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