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首页> 外文期刊>International Journal of Mineral Processing >Interactive effects of the type of milling media and CuSO_4 addition on the flotation performance of sulphide minerals from Merensky ore Part II: Froth stability
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Interactive effects of the type of milling media and CuSO_4 addition on the flotation performance of sulphide minerals from Merensky ore Part II: Froth stability

机译:研磨介质类型和CuSO_4的添加对梅伦斯基矿石硫化矿物浮选性能的交互作用第二部分:泡沫稳定性

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The limitations of pulp chemistry measurements in the flotation of a platinum group mineral (PGM) bearing Merensky ore were demonstrated in Part 1 of this article. In this paper the importance of the contribution of the froth structure due to changing froth stability is analysed using the batch flotation data. The effects of mild steel (MS) and stainless steel (SS) milling media and the addition of copper sulphate on the flotation performance of the sulphide minerals in Merensky ore have been evaluated in. relation to the changes in stability of the froth phase. The effects of pulp chemistry and froth stability on the flotation of sulphide minerals were distinguished by using two different rate constants (k, and &".). The rate constant (kw) calculated as a function of cumulative water recovery was used to describe characteristics of froth phase and k, was calculated as a function of flotation time. The results revealed that the type of grinding media and copper sulphate addition had an interactive effect on the froth stability. While mild steel (MS) milling increased the froth stability due to the presence of hydrophilic iron hydroxides and colloidal metallic iron, the addition of copper sulphate reduced the stability, especially with stainless steel (SS) milling. Copper sulphate addition had a dual role in the flotation of Merensky ore in that it caused destabilisation of the froth zone as well as activation of selected sulphide minerals. The dominant effect was found to depend on the type of milling media and floatability of the mineral in question and this work has demonstrated the importance of using a combination of measurements to evaluate flotation performance holistically.
机译:在本文的第1部分中证明了在含Merensky矿石的铂族矿物(PGM)浮选过程中纸浆化学测量的局限性。在本文中,使用批量浮选数据分析了由于泡沫稳定性变化而引起的泡沫结构贡献的重要性。与泡沫相稳定性的变化有关,已经评估了软钢(MS)和不锈钢(SS)研磨介质以及硫酸铜的添加对Merensky矿石中硫化物矿物浮选性能的影响。纸浆化学性质和泡沫稳定性对硫化物矿物浮选的影响通过使用两个不同的速率常数(k和&“。)来区分,使用速率常数(kw)作为累积水回收率的函数来描述特征。根据浮选时间计算泡沫相和k的比值,结果表明,研磨介质的类型和硫酸铜的添加对泡沫稳定性具有交互作用;而低碳钢(MS)铣削则增加了泡沫的稳定性。在存在亲水性氢氧化铁和胶态金属铁的情况下,添加硫酸铜会降低稳定性,特别是在不锈钢(SS)铣削中。添加硫酸铜在梅伦斯基矿浮选中起双重作用,因为这会引起泡沫的不稳定发现主要的作用取决于研磨介质的类型和q中矿物的漂浮性。这项工作已经证明了使用多种测量方法来全面评估浮选性能的重要性。

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