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Tellurium in gold processing

机译:金加工中的碲

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Tellurium demand has risen significantly (and is projected to continue as such) as cadmium tellu-ride materials are a vital component in photovoltaic cell technology. Currently the majority of supply is produced via conventional processing of copper anode slimes, however the scope for expansion of these activities is limited and actually expected to decline with decreasing global copper ore quality. Thus exploiting alternate sources of the metal is of great importance.Several gold deposits worldwide contain significant proportions of refractory telluride minerals. Two regions (Kankberg, Sweden and Dashuigou and Majiagou, China) reportedly produce tellurium as a byproduct of their gold operations, but there is limited information regarding their process. The Emperor process in Fiji produced tellurium between 1975 and 1986, first oxidising the tellurium with calcium hypochlorite to release the gold, then a reducing leach (Na_2S) to solubilise the tellurium and finally precipitation with Na_2SO_3 to recover it from solution. While this section of the plant was abandoned when the Te price dropped, it displays a viable pathway for production from gold ore.As the pretreatment options for refractory gold processing vary significantly in their impact on the concentrate, the pathway and potential for tellurium recovery will also differ. For example Kalgoorlie consolidated gold mines (KCGM), Western Australia historically operated an oxidative roast prior to cyanidation, but recently switched to ultra-fine grinding. This alters tellurium speciation and leach chemistry. Where the bulk of previous work on the topic focussed on gold extraction, this paper uses behaviour of tellurium in simulated systems to describe the likely behaviour of tellurium under different pretreatment regimes and the potential impact on its recovery.
机译:碲需求显著上升(并且被投射到继续原样的)如镉tellu骑材料在光伏电池技术的重要组成部分。目前大多数供应经由铜阳极泥的常规处理中,然而,对于这些活动的扩展范围的限制,实际上,预期下降随全球铜矿质量制造。全世界从而利用该金属的替代来源是大importance.Several金矿床的含有耐火碲化物的矿物质显著比例。据报道,两个区域(Kankberg,瑞典和大水沟和马家沟,中国)生产的碲作为他们的黄金业务的副产品,但关于它们的过程中有限的信息。在斐济皇帝过程产生碲1975和1986年之间,第一氧化与次氯酸钙碲释放金,然后还原浸取(Na_2S)以溶解碲和最后沉淀与Na_2SO_3从溶液中回收它。而植物的这一部分时,特价格下降被放弃了,它显示了生产的可行途径从金ore.As难治黄金加工预处理方案在其上浓缩,途径和潜在的碲恢复的影响显著变化会也各不相同。例如卡尔古利巩固金矿(KCGM),西澳大利亚历史上操作氧化之前氰化烤,但最近切换到超精细研磨。这改变碲形态和浸出化学。在以前的工作的话题大部分黄金开采集中,本文采用在模拟系统中碲的行为来描述碲下不同预处理制度可能的行为,并在其复苏的潜在影响。

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