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Pilot testing a novel galvanically-assisted atmospheric leaching process for copper concentrates

Pilot testing a novel galvanically-assisted atmospheric leaching process for copper concentrates
铜精矿新型电镀辅助常压浸出工艺的中试
批准号:
350268-2007
负责人:
Dixon, David
金额:
$12.99万
依托单位国家:
加拿大
项目类别:
Idea to Innovation
财政年份:
2007
资助国家:
加拿大
项目状态:
已结题
起止时间:
2007-01-01 至 2008-12-31

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中文摘要
翻译
不列颠哥伦比亚省开发了一种令人兴奋的从原生铜精矿中浸出铜的新技术,称为“Galvanox”。Galvanox是从黄铜矿(CuFeS2)精矿中的铜在铁/硫酸亚铁介质中的电镀辅助大气浸出,与现有工艺相比具有几个潜在的优势。继对纯矿物样品进行了成功的初步研究后,I2I第一阶段拨款被申请用于对加拿大和其他地方矿场的铜精矿样品进行进一步的关键研究和测试。在第一阶段计划取得成功后,确定了营销合作伙伴(贝特曼工程公司),并于2006年10月签署了贝特曼和UBC之间的独家营销协议。我们现在准备在试点工厂规模(每天几公斤铜)的一个或多个来自加拿大和其他地方的精矿样品上以连续模式测试Galvanox浸出技术。这一阶段的成功可能直接导致全面的可行性研究,进而在加拿大和其他地方的矿山建立全面的铜浸出厂(每年30,000吨铜)。此外,还提出了许多其他研究和测试计划,以确保该技术的广泛成功,包括:额外的批量测试,以检查各种因素对浸出性能的影响;测试铁氧水解试验和所产生的铁沉淀的表征;研究直接电积铜的可行性;测试额外的铜和贱金属硫化矿物的工艺;从银钒浸出渣中回收钼精矿和金;以及在存在细磨黄铁矿的情况下,黄铜矿浸出和亚铁氧化动力学的预测模型的开发。
英文摘要
An exciting new technology for leaching copper from primary copper concentrates called "Galvanox" has been developed at UBC. Galvanox is the galvanically-assisted atmospheric leaching of copper from chalcopyrite (CuFeS2) concentrates in a ferric/ferrous sulfate medium, which offers several potential advantages over existing processes.Following successful preliminary research conducted on pure mineral samples, an I2I Phase I grant was applied for to conduct further critical research and testing on copper concentrate samples from mine sites in Canada and elsewhere. Following the success of the Phase I program, a marketing partner (Bateman Engineering) was identified, and an exclusive marketing agreement between Bateman and UBC was signed in October 2006.We are now ready to test the Galvanox leaching technology in continuous mode at the pilot plant scale (several kg Cu per day) on one or more concentrate samples from Canada and elsewhere. Success with this phase could lead directly to full feasibility studies, and, in turn, to full-scale (>30,000 tonnes Cu per year) copper leaching plants at mines in Canada and elsewhere.In addition, a host of other research and testing programs are proposed to ensure broad success for the technology, including: additional batch testing to examine the effects of various factors on leach performance; testing of iron oxyhydrolysis and characterization of the resulting ferric precipitates; examining the feasibility of direct copper electrowinning; testing the process on additional copper and base metal sulfide minerals; recovery of molybdenum concentrates and gold from Galvanox leach residues; and development of predictive models of the kinetics of chalcopyrite leaching and ferrous oxidation in the presence of finely ground pyrite.
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