[含金硫化矿的生物氧化及氰化残留物的后续生物处理]。

A T Kanaev, A G Bulaev, G V Semenchenko, Z K Kanaeva, A A Shilmanova
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引用次数: 0

摘要

对Bakyrchik矿床矿石的渗流生物氧化参数进行了研究。对工艺参数(如浸出剂浓度、灌溉强度和浸出各阶段的停顿时间)的研究揭示了贵金属提取的最佳模式。矿石的处理阶段为生物氧化、氰化提金或硫代硫酸盐浸出提金和氰化物的生物破坏。氰化金、银的回收率分别为64.0和57.3%。硫代硫酸盐浸出金、银的回收率分别为64.0和57.3%。未氧化矿石(对照试验)氰化金、银的回收率分别为20.9%和26.8%。对未氧化矿石进行硫代硫酸盐浸出,金和银的提取率分别为38.8%和24.2%。用碱菌属细菌处理氰化残留物,以破坏氰化物。
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[Biooxidation of gold-bearing sulfide ore and subsequent biological treatment of cyanidation residues].

The percolation biooxidation parameters of ore from the Bakyrchik deposit were studied. An investigation of the technological parameters (such as the concentration of leaching agents, irrigation intensity, and pauses at various stages of the leaching) revealed the optimal mode for precious metal extraction. The stages of the ore processing were biooxidation, gold extraction by cyanidation or thiosulfate leaching, and biological destruction of cyanide. The gold and silver recovery rates by cyanidation were 64.0 and 57.3%, respectively. The gold and silver recovery rates by thiosulfate leaching were 64.0 and 57.3%, respectively. Gold and silver recovery rates from unoxidized ore (control experiment) by cyanidation were 20.9 and 26.8%, respectively. Thiosulfate leaching of unoxidized ore allowed the extraction of 38.8 and 24.2% of the gold and silver, respectively. Cyanidation residues were treated with bacteria of the genus Alcaligenes in order to destruct cyanide.

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