首页> 外文会议>9th international symposium on high-temperature metallurgical processing >Structural Analysis of Germanium (Ge)- Containing Ferrous Calcium Silicate Magnesia Slag for Applications of Black Copper Smelting
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Structural Analysis of Germanium (Ge)- Containing Ferrous Calcium Silicate Magnesia Slag for Applications of Black Copper Smelting

机译:含锗(Ge)的硅酸钙镁渣在黑铜冶炼中的结构分析

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Ferrous-calcium-silicate (FCS) based slag has been used in the copper industry over the last two decades. The FCS slag has also been used in a secondary copper processing such as in black copper smelting which has different operation conditions compared to that of typical primary copper processing. In the process, a variety of copper bearing scraps from sources such as industrial waste, consumer waste and electronic waste (e-waste) are used. The valuable metals in these secondary resources are distributed in different phases during the process. Understanding the behaviour of the valuable elements at the relevant conditions is vital for optimizing the process and to maximize the recovery of the elements. In this study, we investigated the structure of Ge-containing FCS-based slag at different conditions (oxygen partial pressure and temperature) using Fourier-Transform Infrared (FTIR) spectroscopy to explore the effect of the polymerization on the behaviour of the valuable element Ge in the slag. It was found that experimental parameters significantly influence the slag structure, and therefore, the partitioning of Ge in the slag. A correlation between the distribution ratio of Ge and the slag structure has developed in the current study.
机译:在过去的二十年中,硅酸铁钙(FCS)基熔渣已用于铜工业。 FCS炉渣还用于次级铜加工中,例如黑铜冶炼,与典型的初级铜加工相比,其操作条件有所不同。在此过程中,使用了来自工业废物,消费废物和电子废物(电子废物)等各种来源的含铜废料。这些二次资源中的贵重金属在加工过程中分布在不同的阶段。了解有价值元素在相关条件下的行为对于优化流程和最大化元素回收率至关重要。在这项研究中,我们使用傅立叶变换红外(FTIR)光谱研究了在不同条件(氧分压和温度)下含Ge的FCS基炉渣的结构,以探讨聚合反应对有价值元素Ge的行为的影响。在炉渣中。发现实验参数显着影响炉渣的结构,因此,Ge在炉渣中的分配。在当前的研究中,Ge的分配比例与炉渣结构之间存在相关性。

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