Heap sulphuric-thiocyanate leaching of gold and uranium

A. A. Shipnigov, A. V. Epiforov, R. M. Sobennikov, E. D. Musin, S. V. Balikov
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Abstract

The article evaluates the main parameters of simultaneous heap leaching of gold and uranium from oxidised gold-uranium ore using sulphuric acid thiocyanate solutions. Pilot tests for the simultaneous heap leaching of gold and uranium were carried out using oxidised crushed gold-uranium ore with a size of -40+0 mm. The gold and uranium content in the ore was 0.80 and 266 g/t, respectively. Experiments were carried out using a percolation column with a diameter of 300 mm and a height of 2000 mm The ore mass in the column was 180 kg. The temperature during the tests was in the range of 17–25°C. Leaching was carried out under the following conditions: H2SO4 concentration – 5 g/dm3, SCN– concentration – 0.5 g/dm3, Eh – 490–510 mV, Fe3+ ion concentration – 1.0–1.5 g/dm3. Acid-soluble minerals contained in the ore comprised the source of iron ions. Hydrogen peroxide was used to oxidise Fe2+ ions. Pilot tests were carried out in a closed cycle with separate sorption of gold and uranium. Based on the research results, gold recovery reached 90%, while uranium recovery was 55%. Following gold and uranium leaching, the loaded activated carbons and ion exchange resins were obtained. It was established that the gold content on activated carbons was 0.5–0.6 mg/g, while the uranium content on ion exchange resins amounted to 30–35 mg/g. The reagent consumption was as follows: H2SO4 – 10.5 kg/t, KSCN – 0.94 kg/t, H2O2 – 0.65 kg/t. It is shown that the technology for simultaneous heap leaching of gold and uranium with sulphuric acid thiocyanate solutions offers efficient processing of the ore. The recovery rates of gold and uranium are comparable to those obtained during pilot tests for heap leaching of the ore using conventional technology, involving the individual twostage leaching of these metals using sulphuric acid and cyanide solutions.
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金和铀的硫酸-硫氰酸盐堆浸法
文章评估了利用硫酸硫氰酸盐溶液从氧化金铀矿石中同时堆浸金和铀的主要参数。使用粒度为 -40+0 毫米的氧化金铀矿碎石进行了金铀同时堆浸试验。矿石中的金和铀含量分别为 0.80 克/吨和 266 克/吨。实验使用直径为 300 毫米、高度为 2000 毫米的渗滤柱进行,渗滤柱中的矿石质量为 180 千克。试验期间的温度范围为 17-25°C。沥滤在以下条件下进行:H2SO4 浓度 - 5 g/dm3,SCN- 浓度 - 0.5 g/dm3,Eh - 490-510 mV,Fe3+ 离子浓度 - 1.0-1.5 g/dm3。矿石中的酸溶性矿物是铁离子的来源。过氧化氢用于氧化 Fe2+ 离子。在封闭循环中进行了试点测试,对金和铀进行了单独吸附。根据研究结果,金的回收率达到 90%,而铀的回收率为 55%。金和铀浸出后,得到了负载活性炭和离子交换树脂。活性炭上的金含量为 0.5-0.6 毫克/克,离子交换树脂上的铀含量为 30-35 毫克/克。试剂消耗量如下H2SO4 - 10.5 kg/t,KSCN - 0.94 kg/t,H2O2 - 0.65 kg/t。试验结果表明,硫酸硫氰酸盐溶液同时堆浸金和铀的技术可以高效处理矿石。金和铀的回收率与使用传统技术对矿石进行堆浸试验所获得的回收率相当,后者涉及使用硫酸和氰化物溶液对这些金属进行单独的两阶段浸出。
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