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Evaluation of Absorbents as a Means to Control the Influence of Heavy Metal Ions on the Flotation of a Complex Sulfide Ore

机译:吸收剂评估作为控制重金属离子对复合硫化物矿石浮选的手段的手段

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Due to environmental considerations, mineral processing plants are increasingly recycling water to decrease the impacts of wastewater on environment and the depletion of fresh water resources. Industrial experience has shown that increasing recycling water in flotation typically negatively impacts the recovery and selectivity, especially in the selective flotation of minerals from complex sulfide ores. The major reason for the reduced selectivity is typically the inadvertent activation of sphalerite or pyrite by the heavy metal ions (HMI) in solution. These HMI are often produced during milling and flotation and absorbed by other minerals. In the normal flotation pH value range (8 - 10), these HMI are often in the form of precipitates or complex ions that may re-appear in solution or become active should conditions favour this. In this paper, microflotation, batch flotation and XPS surface measurement were used to investigate the use of HMI absorbents additions to the pulp to improve flotation selectivity of a complex sulfide ore. It has been demonstrated that HMI removal does improve flotation selectivity by facilitating more effective depression of the sphalerite. Microflotation and XPS surface measurements have shown that HMI absorbents compete with sphalerite to absorb HMI, and thus reduce the surface concentration of HMI on those sulfides. The practical use of HMI absorbents in complex sulfide ore flotation is also discussed.
机译:由于环境考虑,矿物加工厂越来越越来越多地回收水,降低废水对环境的影响和淡水资源的枯竭。工业经验表明,增加浮选的回收水通常会对复苏和选择性产生负面影响,特别是在来自复合硫化物矿石的矿物的选择性浮选中。减少选择性的主要原因通常是溶液中重金属离子(HMI)的股卤代物或硫铁矿的无意激活。这些HMI通常在研磨和浮选期间产生并被其他矿物吸收。在正常的浮选pH值范围(8-10)中,这些HMI通常是沉淀物或复杂离子的形式,其可以重新出现在溶液中或者应该是活性的条件支持这一点。在本文中,使用微型光栅,批量浮选和XPS表面测量来研究HMI吸收剂的使用添加到纸浆中以改善复合硫化物矿石的浮选选择性。已经证明HMI去除通过促进更有效的闪锌矿,改善浮选选择性。 Microflotation和XPS表面测量表明,HMI吸收剂与闪锌矿竞争以吸收HMI,从而降低在这些硫化物上的HMI的表面浓度。还讨论了HMI吸收剂在复合硫化物矿石中的实际应用。

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