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臭氧/硫代硫酸盐辅助从旧浮选尾矿中浸出铜和金

Ozone/Thiosulfate-Assisted Leaching of Cu and Au from Old Flotation Tailings.

作者信息

Trujić Stefan, Popović Miroslav P, Conić Vesna, Janošević Miloš, Alimpić Filip, Bajić Dragoljub, Milenković-Anđelković Ana, Abramović Filip

机构信息

Department of Environment and Sustainable Development, Singidunum University, Danijelova 32, 11010 Belgrade, Serbia.

Mining and Metallurgy Institute Bor, Albert Ajnštajna 1, 19210 Bor, Serbia.

出版信息

Molecules. 2024 Dec 27;30(1):69. doi: 10.3390/molecules30010069.

Abstract

The growing demand for metal production promotes the search for alternative sources and novel modalities in metallurgy. Flotation tailings are an important secondary mineral resource; however, they might pose a potential environmental threat due to containing toxic metals. Therefore, proper leaching reagent selection is required. Ozone is an alternative oxidizing agent for metal leaching, as its use prevents contaminating product generation while increasing the noble metal extraction efficiency in the presence of complexing agents. In this study, the feasibility and efficiency of combining the use of thiosulfate and ozone for gold and silver extraction have been investigated as an eco-friendly alternative for recovery from flotation tailings. Two sets of samples from old flotation tailings of Copper Mine Bor (Serbia) were prepared and physico-chemically characterized, then treated in two experimental leaching procedures, followed by thorough XRD and SEM/EDS analyses of the products. It showed that after 1 h of leaching in a water medium at room temperature and a solid-to-liquid phase ratio of 1:4, 88.8% of Cu was obtained, while a high efficiency of Au extraction from solid residue (after Cu leaching) was attained (83.4%). The results suggest that ozone-assisted leaching mediated by Ca-thiosulfate can be an effective eco-friendly treatment for noble metals recovery from sulfide-oxide ores.

摘要

金属生产需求的不断增长推动了在冶金领域寻找替代资源和新方法。浮选尾矿是一种重要的二次矿产资源;然而,由于含有有毒金属,它们可能构成潜在的环境威胁。因此,需要选择合适的浸出试剂。臭氧是一种用于金属浸出的替代氧化剂,因为在使用它时可防止产生污染性产物,同时在有络合剂存在的情况下提高贵金属的提取效率。在本研究中,已对联合使用硫代硫酸盐和臭氧提取金和银的可行性及效率进行了研究,将其作为从浮选尾矿中回收金属的一种环保替代方法。制备了来自塞尔维亚博尔铜矿旧浮选尾矿的两组样品并进行了物理化学表征,然后在两种实验浸出程序中进行处理,随后对产物进行了全面的X射线衍射(XRD)和扫描电子显微镜/能谱分析(SEM/EDS)。结果表明,在室温下于水介质中以1:4的固液相比浸出1小时后,铜的浸出率为88.8%,同时从固体残渣(铜浸出后)中提取金的效率很高(83.4%)。结果表明,由硫代硫酸钙介导的臭氧辅助浸出可以成为从硫化物 - 氧化物矿石中回收贵金属的一种有效的环保处理方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a1e/11722147/a95209de924e/molecules-30-00069-g001.jpg

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