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Effect of Sodium Sulfite on Floatability of Chalcopyrite and Molybdenite

机译:亚硫酸钠对黄铜矿和辉钼矿浮性的影响

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Sodium hydrogen sulfide (NaHS) is commonly used as a copper depressant in the selective flotation of copper and molybdenum ores. However, the process is facing health and safety issues because NaHS readily yields toxic hydrogen sulfide gas (H 2 S) under acidic conditions. In this study, Na 2 SO 3 was proposed as an alternative copper depressant. The effect of Na 2 SO 3 on the surface wettability and floatability of chalcopyrite and molybdenite—typical copper and molybdenum minerals, respectively—was intensively studied using contact angle measurements and flotation tests. Contact angle readings show that the chalcopyrite surface became hydrophilic after the Na 2 SO 3 treatment. Meanwhile, the molybdenite surface was relatively more hydrophobic compared with that of chalcopyrite after the treatment. Flotation tests using pure minerals of chalcopyrite and molybdenite demonstrate that the floatability of chalcopyrite decreased with increasing concentration of Na 2 SO 3 . On the other hand, the floatability of molybdenite gradually increased under similar conditions, suggesting that Na 2 SO 3 might have the potential to be used for selective flotation of chalcopyrite and molybdenite. A possible mechanism is proposed in this study to explain the phenomenon using X-ray photoelectron spectroscopy analysis.
机译:硫化氢钠(NaHS)通常在铜和钼矿石的选择性浮选中用作铜抑制剂。但是,该方法面临健康和安全问题,因为NaHS在酸性条件下容易产生有毒的硫化氢气体(H 2 S)。在这项研究中,建议使用Na 2 SO 3作为替代的铜抑制剂。使用接触角测量和浮选试验深入研究了Na 2 SO 3对黄铜矿和辉钼矿(分别为典型的铜和钼矿物质)的表面润湿性和漂浮性的影响。接触角读数显示,在Na 2 SO 3处理后,黄铜矿表面变为亲水性。同时,与处理后的黄铜矿相比,辉钼矿表面的疏水性相对更高。使用黄铜矿和辉钼矿的纯矿物进行浮选试验表明,黄铜矿的漂浮性随Na 2 SO 3浓度的增加而降低。另一方面,辉钼矿的漂浮性在相似条件下逐渐增加,这表明Na 2 SO 3可能具有用于黄铜矿和辉钼矿选择性浮选的潜力。在这项研究中提出了一种可能的机制来解释使用X射线光电子能谱分析的现象。

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