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APPLYING AN AFM IN THE STUDY OF THE ADSORPTION OF XANTHATE ON ARSENOPYRITE

机译:原子力显微镜在黄铁矿对砷黄铁矿吸附研究中的应用

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An atomic force microscopy (AFM) has been applied to study the adsorption of potassium amyi xanthate (PAX) and potassium ethyl xanthate (KEX) on arsenopyrite surface in solutions. AFM images show that the collectors adsorb on arsenopyrite surface in patches at pH 6. Increasing the chemical dosage will increase the adsorption density of the patches on mineral surface. The increased probe-arsenopyrite adhesion measured in PAX solutions at pH 6 is attributed to the adsorption of the patches, suggesting the hydrophobic nature of the patches, which is likely the oily dixanthogen. It is also found that arsenopyrite is reactive in water in the presence of air. At a high pH with the addition of Ca(OH)_2 the adsorption of collectors on arsenopyrite is greatly retarded or depressed because the mineral surface is coated by a lot of precipitates, which is hydrophilic in nature as shown by the measured strong repulsive probe-arsenopyrite detachment force. The findings confirm that the flotation behavior of arsenopyrite in xanthate solutions is very similar to that of pyrite.
机译:原子力显微镜(AFM)已被用于研究溶液中毒黄铁酸钾(PAX)和乙基黄药酸钾(KEX)在毒砂表面的吸附。 AFM图像显示,收集器在pH为6的贴剂中吸附在毒砂表面上。增加化学剂量会增加贴剂在矿物表面上的吸附密度。在pH值为6的PAX溶液中测得的探针毒砂的附着力增加归因于贴剂的吸附,表明贴剂具有疏水性,这很可能是油性的黄原药。还发现毒砂在空气中在水中具有反应性。在高pH值下,添加Ca(OH)_2时,由于矿物表面上覆盖了许多沉淀物,因此捕集剂在毒砂上的吸附会大大受阻或抑制,这是通过测得的强排斥探针显示的,这是亲水性的,毒砂的脱离力。这些发现证实黄药溶液中毒砂的浮选行为与黄铁矿的浮选行为非常相似。

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