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首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >Characterising the effect of different modes of particle breakage on coarse gangue rejection for an orogenic gold ore
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Characterising the effect of different modes of particle breakage on coarse gangue rejection for an orogenic gold ore

机译:不同方式对粒子矿石粗脉冲抗冲击不同模式的影响

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摘要

Enrichment and metal deportment metallurgical parameters, indicative of the propensity for a comminuted ore to preferentially concentrate metal into multiple density fractions during coarse particle gangue rejection (CPGR) by float-sink separation technique, were developed and applied. Including, a coarse separation enrichment deportment index (EDI) parameter metric to describe a comminuted ore overall preferential grade by density deportment response. The parameters describe the extent of gangue and value component liberation as a measurable rock property that is a function of both particle breakage regime and downstream separation technique. Ultimately the methodology provides metallurgical metrics for measuring the separation performance by the liberation of gangue in fine crushed comminuted ores. In this study, various laboratory-scale fine crushing mechanical and non-mechanical electric pulse SELFRAG Lab devices treated a Ballarat region gold ore to achieve a particle size of <2.00 mm to evaluate ore amenability for CPGR and preconcentration potential.
机译:富集和金属驱逐冶金参数,表明粉碎矿石的倾向优先浓缩金属在粗粒子膨胀(CPGR)期间通过浮动水槽分离技术进行了浓缩金属,并施加。包括粗略分离浓缩驱逐指数(EDI)参数度量,以描述密度驱逐响应的粉碎矿石总体优先级。该参数描述了作为可测量的岩石特性的煤矸石和价值分量解放的程度,是颗粒破损方案和下游分离技术的函数。最终,该方法提供了冶金指标,用于测量通过细碎的粉碎矿石中的煤矸石的解放性能。在这项研究中,各种实验室级精细粉碎机械和非机械电脉冲Selfrag Lab器件处理了一个持久性区域金矿,以实现<2.00mm的粒径,以评估CPGR和前浓缩的矿石扫描性。

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