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The separation of arsenic from copper in a Northparkes copper-gold ore using controlled-potential flotation

机译:可控电位浮选法分离北帕克斯铜金矿石中的砷和铜

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In order for the high-arsenic regions of the Northparkes copper-gold orebody to be beneficiated economically, tennantite ((Cu,Fe)_(12)As_4S_(13)) present in the ore needs to be rejected to enable copper concentrates to meet the typical smelter penalty level of 2000 ppm As. Using a composite sample of high-arsenic drill cores from Northparkes it was possible to selectively separate tennantite from chalcopyrite (CuFeS_2) and bornite (Cu_5FeS_4) using controlled-potential flotation. The separation was made on a bulk copper-arsenic concentrate after reducing the pulp potential to about -150 mV SHE at pH 12 and floating the tennantite from the other copper minerals. The basis of the separation relies on findings that the lower limiting pulp potential threshold for tennantite is lower than that for chalcopyrite such that there is a potential window in the reducing region where tennantite is strongly floatable but chalcopyrite is not Little or no selectivity between tennantite and chalcopyrite was found in the oxidising pulp potential region for the range examined. From the composite sample tested, which had a head grade of 0.11 percent As and 1.2 percent Cu, it was possible to produce a low-arsenic high-copper concentrate containing 52 percent of the non-tennantite copper and assaying 2600 ppm As. Computer simulations have shown that for a feed containing a more typical arsenic and copper level (200 ppm As and 1 percent Cu) the efficiency of separation should be sufficient to concentrate about 61 percent of the copper in a product assaying less than 2000 ppm As. A conceptual flowsheet for arsenic rejection from Northparkes copper-gold ore, based on the findings from this study, is presented and discussed in this paper.
机译:为了经济地选出Northparkes铜金矿体的高砷区域,需要拒绝矿石中存在的Tennantite((Cu,Fe)_(12)As_4S_(13))以使铜精矿满足要求典型的冶炼厂罚款水平为2000 ppm As。使用来自Northparkes的高砷钻芯的复合样品,可以使用可控电位浮选法从黄铁矿(CuFeS_2)和褐铁矿(Cu_5FeS_4)中选择性分离黄铁矿。在将纸浆电势在pH 12下降低至约-150 mV SHE并从其他铜矿物中浮选出蓝宝石后,在块状铜-砷精矿上进行分离。分离的基础依赖于以下发现:钙钛矿的下限纸浆电位阈值低于黄铜矿的下限,使得在还原区域中存在一个潜在的窗口,在该区域中,钙钛矿可强烈漂浮,但黄铜矿与钙钛矿之间的选择性很小或没有选择性。在检查范围内的氧化纸浆电位区域中发现了黄铜矿。从具有0.11%的As和1.2%的Cu的品位等级的复合样品中,可以生产出含有52%的非钙云母铜的低砷高铜精矿,并测定2600 ppm As。计算机模拟表明,对于含有更典型的砷和铜含量(200 ppm的砷和1%的铜)的进料,分离效率应足以将含量小于61 ppm的铜浓缩到产品中,而砷含量低于2000 ppm。本文提出并讨论了基于该研究结果的Northparkes铜金矿石中砷脱除的概念性流程图。

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