添加硅铁对含Co、Cu、Ge冶炼渣用碳和硫酸钙还原硫化的影响

Junior Ngoyi Kayembe, Michel Kalenga Wa Kalenga, D. Nyembwe
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引用次数: 0

摘要

目前对贱金属的需求,原金属资源正在枯竭;对矿渣等初级冶金废弃物的回收利用需求日益增加。本研究研究了在刚果民主共和国STL/Gecamines含锗铜渣碳热还原和硫化过程中添加硅铁回收Ge、Cu和Co的情况。采用XRF、XRD、SEM-EDS进行表征,并在实验规模的氧化铝管炉上进行实验。以焦炭为还原剂,加入高纯硫酸钙进行硫化。实验采用石墨坩埚,炉内温度设置为1400℃,采用Eurotherm温控器。为了限制石墨坩埚与炉渣之间的相互作用,以0.01 l/min的速度吹入CO。采用XRD、Origin 8.5软件和SEM-EDS对产物进行了表征。结果表明,Cu、Co和Ge被置换成一个matte相。然而,观察到Ge从硅酸盐基体向金属相的位移。在caso4的存在下,当FeSi增加时,金属相中形成CuGeFe、CoFe、Cu、FeS和部分Cu,而由于二氧化硅含量高,产生更多的无定形渣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of Ferro-Silicon Addition on the Reduction and Sulfurization of Co, Cu and Ge- Bearing Smelter Slag with Carbon and Calcium Sulfate
The current appetite for base metals, primary metals resources are being depleted; theneed to recycling waste of primary metallurgy such as slag is on the rise. This study investigates the recovery of Ge, Cu and Co with ferrosilicon addition from Ge-copper bearing slag from STL/Gecamines in the Democratic Republic of Congo during carbothermic reduction and sulfurization. Characterization was conducted using XRF, XRD and SEM-EDS while a bench scale alumina tube furnace was used for the experiments. Coke was used as reductant while calcium sulfate (CaSO 4 -high purity) was added for sulfurization. Graphite crucibles were used for the experiments and the furnace set for 1400 °C using Eurotherm temperature controller. To limit the interaction between the graphite crucible and the slag, CO was blown in at 0.01 l/min. Products were characterized using XRD coupled with Origin 8.5 software and SEM-EDS. Results have revealed that Cu, Co and Ge were displaced to a matte phase. However, the displacement of Ge from the silicates matrix to the metallic phase was observed. The formation of CuGeFe, CoFe, CuS, FeS and some Cu were present in the metallic phase when FeSi increased in presence of CaSO 4 whereas more amorphous slag was produced due to high silica content.
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