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Impeller Radial Velocity and Air Flow Rate Influence on Copper Rougher Flotation Recovery

机译:叶轮径向速度和空气流速对粗铜浮选回收率的影响

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A rougher flotation study has been done to analyze the effects of copper feed mineralogy, air flow rate and impeller radial velocity on metallurgical performance. During the performance testing the trials were exposed to metallurgical examining and computerised mineral analysis to establish a size-by-size mineralogy. The mineralogical and metallurgical information was compared to the material balance for rougher flotation results. These samples showed that copper recovery optimization should focus on the losses of liberated Cu-minerals and how they are associated with fine particles. The result of variable impeller radial velocity for each flotation cell cascade on metallurgical performance has been explored on a known-sized and an unknown-sized base, to gauge the input from the fine particles. An industrial application is discussed in this paper, and it validates that divergence of the impeller radial velocity and air flow has positive influence on the recovery.
机译:进行了更粗略的浮选研究,以分析铜进料矿物学,空气流速和叶轮径向速度对冶金性能的影响。在性能测试过程中,对试验进行了冶金检查和计算机化的矿物分析,以建立按尺寸分类的矿物学。将矿物学和冶金学信息与物料平衡进行比较,以获得更粗略的浮选结果。这些样品表明,铜的回收率优化应着重于释放的铜矿物质的损失及其与细颗粒的关系。在已知大小和未知大小的基础上,研究了每个浮选级联的叶轮径向速度对冶金性能的影响,以测量来自细颗粒的输入。本文讨论了工业应用,并验证了叶轮径向速度和气流的发散对恢复有积极影响。

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