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COPPER REMOVAL FROM MOLYBDENITE BY SULFIDATION-LEACHING PROCESS

机译:通过硫化浸出方法从钼覆铜去除钼

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Molybdenite (M0S2) concentrates are produced by differential flotation from bulk copper-molybdenum concentrates. However, complete separation of molybdenum by flotation is very difficult, thus, molybdenum concentrates produced by this route requires a further step of chemical purification in order to reduce the copper content to a suitable level for marketing. Refractory chalcopyrite (CuFeS_2) is the major copper mineral impurity in these concentrates; thus the elimination of copper by leaching requires highly aggressive solutions. This paper is concerned with a novel process of chemical purification of molybdenite concentrates containing chalcopyrite as the main copper impurity. The process involves a sulfidation of the molybdenum concentrate with S_2(g) at 380 °C followed by a leaching stage. H_2SO_4-NaCl-O_2 leaching of a sulfidized concentrate containing 3.4% Cu for 90 min at 100°C produced a molybdenite concentrate with less than 0.2% Cu, which is appropriate for marketing. Molybdenite dissolution was negligible in these conditions.
机译:钼矿(M0S2)浓缩物由来自散装铜 - 钼浓缩物的差分浮选产生。然而,通过浮选完全分离钼是非常困难的,因此,通过该路线生产的钼浓缩物需要进一步的化学纯化步骤,以将铜含量降低到适当的营销水平。难治性黄铜矿(Cufes_2)是这些浓缩物中的主要铜矿石杂质;因此,通过浸出消除铜需要高度侵略性的解决方案。本文涉及含有黄铜矿作为主要铜杂质的钼矿浓缩物的新型化学纯化过程。该方法包括在380℃下用S_2(g)的钼浓缩物硫化,然后浸出阶段。 H_2SO_4-NaCl-O_2在100℃下含有3.4%Cu含有3.4%Cu的硫化浓缩物的浸出产生的钼矿浓缩液,浓缩液,小于0.2%Cu,适合营销。在这些条件下,钼溶解可忽略不计。

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