首页> 外文会议>Randol Gold amp; Silver Forum Apr 25-28, 2000, Vancouver, B.C. >THE BIoLIx PROCESS: THE BIOLOGICAL ALTERNATIVE TO CYANIDE
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THE BIoLIx PROCESS: THE BIOLOGICAL ALTERNATIVE TO CYANIDE

机译:生物过程:氰化物的生物替代物

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Heap leaching of ore with cyanide is a common and economical means of extracting precious metals (gold and silver) from mined ore. The use of cyanide, and the heap leach process, can seriously impact the environment. In the worst case, catastrophic failure of containment structures can release toxic levels of cyanide into receiving bodies of water, resulting in toxicity to ecological communities and contamination of public water supplies. Furthermore, cyanide degradation products such as nitrates can also impact local streams, lakes, and aquifers. Even if cyanide can be removed, the crushed residual ore may generate acid solutions that can release toxic heavy metals into the environment. Pintail Systems, Inc. (Pintail) of Aurora, CO, in conjunction with technology partners Science Applications International Corporation (SAIC) and Fairmile Gold Corporation (Fairmile), have developed a microbially-based precious metal lixiviant that can be used as an alternative to cyanide. The microbial process, called BioLix, is Pintail's second-generation biotechnology product for the recovery of precious metals from ore. The BioLix process is based on the enzymatic induction of organic lixiviant compounds using proprietary inducing agents and microorganisms. The process operates at near neutral pH and ambient temperatures using non-pathogenic microorganisms and food-grade chemicals. Precious metal extraction is also enhanced through the employment of microorganisms that facilitate mineral-solution reactions such as surfactant generation (improved wettability), and oxidation of gangue minerals that expose mineral surfaces to leaching. ' In order to demonstrate the effectiveness of the BioLix process, results from laboratory bench-scale experiments and a column study are presented. In addition, new applications for this enabling technology are discussed and include re-leaching of spent ore heaps, in situ leaching, and cyanide replacement for heap leaching.
机译:用氰化物堆浸矿石是从开采的矿石中提取贵金属(金和银)的一种常见且经济的方法。氰化物的使用以及堆浸过程会严重影响环境。在最坏的情况下,安全壳结构的灾难性故障可能将氰化物的毒性水平释放到接收水的体内,从而对生态群落产生毒性并污染公共供水。此外,氰化物降解产物(例如硝酸盐)也会影响当地的河流,湖泊和含水层。即使可以去除氰化物,破碎后的残留矿石也可能产生酸性溶液,这些酸性溶液会将有毒的重金属释放到环境中。科罗拉多州奥罗拉市的Pintail Systems,Inc.(Pintail)与技术合作伙伴国际科学应用公司(SAIC)和Fairmile Gold Corporation(Fairmile)共同开发了一种基于微生物的贵金属浸出液,可替代氰化物。称为BioLix的微生物过程是Pintail的第二代生物技术产品,用于从矿石中回收贵金属。 BioLix工艺基于使用专有诱导剂和微生物的有机浸滤剂酶促诱导。该过程使用非病原微生物和食品级化学品在接近中性pH和环境温度的条件下运行。通过使用促进矿物质溶液反应的微生物(例如表面活性剂生成(提高的润湿性)以及脉石矿物的氧化,使矿物表面暴露于淋溶),还可以提高贵金属的提取率。为了证明BioLix工艺的有效性,提出了实验室规模试验和专栏研究的结果。此外,还讨论了这种使能技术的新应用,其中包括对废矿石堆进行重新浸出,原位浸出以及为堆浸进行氰化物置换。

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