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A NEW TECHNOLOGY FOR THE CONTROL OF LEAD NITRATE ADDITION IN CYANIDATION

机译:控制氰化中铅含量的新技术

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摘要

In spite of the wide use of lead compounds to enhance cyanidation of free milling sulphide-bearing gold ores, an industrial control method was only implemented four years ago. This study presents the results of the investigation that led to the development of the on-line control technology. Two free milling sulphide-bearing gold ores and high purity minerals were used to develop and test the concept. The first ore contains 2.8 g/t Au, 6.2% pyrrhotite, 2.1% pyrite 0.6 % arsenopyrite, 0.1% chalcopyrite and 0.1% organic carbon. The second ore contains 10.4 g/t Au, 3.2% pyrite, 0.8% pyrrhotite and 0.38% chalcopyrite. The first ore showed a much higher oxidation rate in the pre-leach than the second one and consumed seven times more cyanide. A relation between the formation of thiosulphate and thiocyanate and the additions of lead nitrate were quantified. The "reducing power", a titration with permanganate, predominantly determines the concentration of thiosulphate and thiocyanate in cyanide solution. The relation between the reducing power and the addition of lead nitrate at various concentrations of pyrrhotite and chalcopyrite in the ores was established, providing a monitor/control strategy for lead nitrate addition.
机译:尽管广泛使用铅化合物来增强含硫硫化矿的易磨金矿石的氰化作用,但四年前才实施了工业控制方法。这项研究提出了导致在线控制技术发展的调查结果。使用了两种自由研磨的含硫化物的金矿石和高纯度矿物来开发和测试该概念。第一矿石包含2.8 g / t的Au,6.2%的黄铁矿,2.1%的黄铁矿,0.6%的毒铁矿,0.1%的黄铜矿和0.1%的有机碳。第二矿石含有10.4g / t的Au,3.2%的黄铁矿,0.8%的黄铁矿和0.38%的黄铜矿。第一种矿石在预浸中的氧化速率比第二种矿石高得多,并且消耗的氰化物多出七倍。定量了硫代硫酸盐和硫氰酸盐的形成与硝酸铅的添加之间的关系。用高锰酸盐滴定的“还原能力”主要决定氰化物溶液中硫代硫酸盐和硫氰酸盐的浓度。建立了还原力与矿石中黄铁矿和黄铜矿中不同浓度的硝酸铅添加量之间的关系,为硝酸铅添加量的监测/控制提供了策略。

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