首页> 外文期刊>Minerals Engineering >Leaching and ion exchange based recovery of nickel and cobalt from a low grade, serpentine-rich sulfide ore using an alkaline glycine lixiviant system
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Leaching and ion exchange based recovery of nickel and cobalt from a low grade, serpentine-rich sulfide ore using an alkaline glycine lixiviant system

机译:使用碱性甘氨酸含碱液体系统,浸出和离子交换基于低等级,富含蛇形硫化物矿石的镍和钴的回收

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摘要

The paper presents the outcomes of exploratory research relating to the atmospheric pressure and ambient temperature leaching of nickel and cobalt from a Western Australian low grade, disseminated, nickel-cobalt sulfide ore, and the subsequent recovery using ion exchange (IX) using alkaline glycine solutions in mildly oxidizing environments. The results present a foundation for a direct leach approach at ambient conditions, particularly if upstream opportunities are considered (heap leach, in-situ leach, or vat leach, or bulk ore leach) from low grade Ni-Co resources. The results for cobalt are particularly exciting given the low recovery of cobalt in most smelting operations and the loss of cobalt to converter slags in conventional approaches. In addition, significant nickel losses are often incurred to flotation cleaner tailings to make a smeltable concentrate at an acceptable level of magnesium. The study showed that even though glycine-based leach rates for Ni and Co are slow, no passivation was observed and about 83.5% Ni and 76.3% Co were extracted at room temperature using conventional bottle rolls over a 672 h period using a multistage extraction (i.e. leachate decant and reagent refresh with either new reagent or recycled barren raffinate). The ore contained cobalt-bearing pentlandite as the predominant Ni-Co mineralization, with Kaolinite-serpentine group, magnesite and hydrotalcite the predominant oxide and pyrrhotite as the predominant sulfide gangue minerals. The effects of glycine concentration, pH and temperature have been studied. It was found that leaching at pH 10.0 gave significant better leach Ni and Co extraction than operating at higher pH of 11.5. In glycine leach campaigns, the dissolution of iron, magnesium, silicon, manganese and other impurities were insignificant. This is particularly important for iron removal which would normally have posed a significant solid-liquid separation and waste disposal cost and magnesium, given the very high levels of magnesium that would normally have dissolved from such ores in acidic systems. Excellent recovery of Ni and Co from leach solutions was achieved by a selected ion exchange resin (Purolite S930Plus) and high Ni and Co dissolution was achieved using recycle glycine solutions after metals adsorption and pH adjustment.
机译:本文介绍了与西澳大利亚低级,散发,镍钴硫化物矿石镍和钴的大气压力和环境温度浸出有关的探索性研究结果,以及使用碱性甘氨酸溶液使用离子交换(IX)的随后恢复在轻度氧化环境中。结果在环境条件下为直接辐射方法提供了基础,特别是如果考虑到从低级Ni-Co资源的上游机会(堆浸出,原位射击或增值税浸出或散装矿石浸出)。鉴于大多数熔炼操作中钴的恢复和以常规方法中的钴渣的损失较低,钴的结果特别令人兴奋。此外,显着的镍损耗通常是浮选清洁剂尾矿,以使浓缩浓缩物在可接受的镁水平。该研究表明,尽管Ni和Co的甘氨酸的乳液速率缓慢,但在使用多级萃取的672小时内,在室温下,在室温下,没有观察到的甘氨酸的浸出速率,并且在室温下萃取约83.5%的CO和76.3%的CO。即用新试剂或再循环贫瘠萃余液浸出浸出和试剂刷新。矿石含有含钴的五峰,作为主要的Ni-Co矿化,具有高碱石 - 蛇形基团,菱镁矿和水滑石,主要的氧化物和Pyrhotite作为主要的硫化物甘草矿物质。研究了甘氨酸浓度,pH和温度的影响。发现pH100的浸出具有显着的更好的乳液Ni和Co萃取,而不是在11.5的较高pH下工作。在甘氨酸浸出运动中,铁,镁,硅,锰和其他杂质的溶解微不足道。这对于鉴于通常溶解于酸性系统中的矿石通常溶解的非常高水平的镁,这对于通常具有显着的固液分离和废物处理成本和镁的铁去除尤其重要。通过选定的离子交换树脂(嘌呤酸S930Plus)实现Ni和浸出溶液的优异回收率,并且在金属吸附和pH调节后,使用再循环甘氨酸溶液实现高Ni和CO溶解。

著录项

  • 来源
    《Minerals Engineering》 |2020年第2020期|共11页
  • 作者单位

    Curtin Univ Fac Sci &

    Engn Western Australian Sch Mines Minerals Energy &

    Ch GPO Box U1987 Perth WA 6845 Australia;

    Curtin Univ Fac Sci &

    Engn Western Australian Sch Mines Minerals Energy &

    Ch GPO Box U1987 Perth WA 6845 Australia;

    Curtin Univ Fac Sci &

    Engn Western Australian Sch Mines Minerals Energy &

    Ch GPO Box U1987 Perth WA 6845 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿业工程;
  • 关键词

    Glycine; Nickel; Cobalt; Leaching; Batteries;

    机译:甘氨酸;镍;钴;浸出;电池;

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