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Effect of cuprous cyanide, dry and wet milling on the selective flotation of galena and sphalerite

机译:氰化亚铜,干法和湿法研磨对方铅矿和闪锌矿选择性浮选的影响

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摘要

Batch flotation tests of a lead–zinc sulphide composite ore from the Rosh Pinah Mine have been carried out at pH 8.5 in the presence of copper cyanide complexes. These copper cyanide complexes are often found in the recycled water that is used in the milling and the lead flotation circuits. Flotation results have shown that cuprous cyanide complexes can activate sphalerite. In addition, the activation and subsequent flotation of sphalerite was greater when the composite was dry milled as compared to wet milling. Surface analysis of copper(I)-activated sphalerite samples was studied by X-ray photoelectron spectroscopy (XPS). XPS results showed the presence of copper species on the surface of sphalerite after activation with cuprous cyanide complexes. The copper species could be removed from the surface of sphalerite after treatment with sodium cyanide. This explains, amongst others reasons, the high cyanide requirement at Rosh Pinah Mine for the efficient depression of sphalerite in the lead flotation circuit.
机译:在氰化铜络合物的存在下,在Rosh Pinah矿对铅-锌硫化物复合矿石进行了pH 8.5的分批浮选试验。这些氰化铜络合物通常在研磨和铅浮选回路中使用的循环水中发现。浮选结果表明,氰化亚铜配合物可以活化闪锌矿。另外,与湿磨相比,干磨复合材料时闪锌矿的活化和随后的浮选更大。用X射线光电子能谱(XPS)研究了铜(I)活化闪锌矿样品的表面分析。 XPS结果表明,氰化亚铜配合物活化后,闪锌矿表面上存在铜物种。用氰化钠处理后,可以从闪锌矿表面除去铜。除其他原因外,这解释了Rosh Pinah矿对铅浮选回路中闪锌矿有效压降对氰化物的高要求。

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