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Floatability of molybdenite and chalcopyrite in artificial seawater

机译:人工海水中钼和黄铜矿的可浮动性

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摘要

Seawater has been reported to depress the floatability of molybdenum in copper-molybdenum (Cu-Mo) flotation circuits under alkaline conditions (pH 9.5). However, the seawater used in the process contains various minerals and flotation reagents, which make it difficult to investigate the depression mechanism. This paper presents a fundamental study into the effect of artificial seawater as a seawater model solution on the floatability of molybdenite and chalcopyrite, which are the main minerals in the Cu-Mo flotation process. Floatability tests in the absence of flotation reagents (Le., frothers and collectors) reveal that artificial seawater adversely affects the floatability of molybdenite and chalcopyrite at pH 9. This phenomenon can be attributed to the adsorption of hydrophilic Mg(OH)(2) precipitates formed under alkaline conditions on the mineral surfaces, which increases the surface wettability of the mineral particles, as shown by contact angle measurements and atomic force microscopy (AFM) images. The effect of kerosene as a molybdenite collector has also been investigated to assess its potential in the selective flotation of molybdenite and chalcopyrite in artificial seawater.
机译:据报道,海水在碱性条件下抑制铜 - 钼(Cu-Mo)浮选电路中钼(Cu-Mo)浮选电路(pH& 9.5)。然而,该方法中使用的海水含有各种矿物质和浮选试剂,这使得难以研究抑郁机制。本文介绍了人工海水作为海水模型溶液对钼碳酸盐和硫代铜矿的浮动性的影响的基础研究,这是Cu-Mo浮选过程中的主要矿物质。在没有浮选试剂(Le。,母亲和收藏家)的情况下润滑性试验表明人造海水对pH&gt的钼和黄铜矿的可浮动性产生不利影响; 9.这种现象可以归因于在矿物质表面上在碱性条件下形成的亲水性Mg(OH)(2)沉淀物的吸附,这增加了矿物颗粒的表面润湿性,如接触角测量和原子力显微镜所示( AFM)图像。还研究了煤油作为钼腈收集器的影响,以评估其在人工海水中钼和硫代铜矿的选择性浮选中的潜力。

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