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首页> 外文期刊>Metallurgical and Materials Transactions B >Phase Relations, Precious Elements Distribution, and Activities in the Cu-Fe-Pb-As System Saturated with Carbon at 1473 K (1200 °C)
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Phase Relations, Precious Elements Distribution, and Activities in the Cu-Fe-Pb-As System Saturated with Carbon at 1473 K (1200 °C)

机译:1473 K(1200°C)饱和碳的Cu-Fe-Pb-As系统中的相关系,贵金属分布和活度

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摘要

In order to develop a new pyrometallurgical process for the elimination of detrimental arsenic and the recovery of precious elements, such as, silver, gold, and platinum from arsenic-rich copper-lead scraps, the phase relations in the Cu-Fe-Pb-As system saturated with carbon and the distribution of precious elements between the condensed phases generated during the equilibrium at high temperature were investigated. The investigation was carried out by performing a series of laboratory scale experiments using an electrical furnace at 1473 K (1200 °C), followed by the quenching of molten samples taken on the final stage. The samples obtained from the experiments were analyzed using electron probe X-ray micro analysis, inductively couple plasma, and carbon infrared spectrometry techniques. The results were discussed on the basis of the activity coefficient of arsenic, interaction parameters of minor components, and distribution parameters for precious metals in the three equilibrated alloy phases of lead-rich, copper-rich, and iron-rich that coexists in the corresponding miscibility gap. The present results suggest that the recovery of valuable silver and gold into the copper-rich alloy and lead-rich alloy phases and the elimination of arsenic and iron into the iron-rich alloy phase might be feasible.
机译:为了开发一种新的火法冶金工艺,以消除有害的砷并从富含砷的铜铅废料中回收珍贵元素,如银,金和铂,Cu-Fe-Pb-中的相关系研究了碳饱和的体系以及在高温下平衡过程中产生的凝结相之间贵重元素的分布。通过使用1473 K(1200°C)的电炉进行一系列实验室规模的实验进行研究,然后淬火最后阶段的熔融样品。使用电子探针X射线显微分析,电感耦合等离子体和碳红外光谱技术分析了从实验中获得的样品。根据砷的活度系数,次要成分的相互作用参数以及相应地共存的富铅,富铜和富铁三个平衡合金相中贵金属的分布参数,讨论了结果。相容性差距。目前的结果表明,将有价值的银和金回收到富铜合金和富铅合金相中以及将砷和铁消除到富铁合金相中是可行的。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2015年第2期|680-687|共8页
  • 作者单位

    Advanced Mining Technology Center and Mining Engineering Department of University of Chile">(1);

    Advanced Mining Technology Center and Mining Engineering Department of University of Chile">(1);

    Waseda University">(2);

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