Structural Analysis of Germanium (Ge)-Containing Ferrous Calcium Silicate Magnesia Slag for Applications of Black Copper Smelting

The Minerals, Metals and Materials Society
M. A. H. Shuva M. A. Rhamdhani G. A. Brooks S. H. Masood M. A. Reuter
Organization:
The Minerals, Metals and Materials Society
Pages:
10
File Size:
220 KB
Publication Date:
Mar 1, 2018

Abstract

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 sec- ondary 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 in fluence 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.
Citation

APA: M. A. H. Shuva M. A. Rhamdhani G. A. Brooks S. H. Masood M. A. Reuter  (2018)  Structural Analysis of Germanium (Ge)-Containing Ferrous Calcium Silicate Magnesia Slag for Applications of Black Copper Smelting

MLA: M. A. H. Shuva M. A. Rhamdhani G. A. Brooks S. H. Masood M. A. Reuter Structural Analysis of Germanium (Ge)-Containing Ferrous Calcium Silicate Magnesia Slag for Applications of Black Copper Smelting. The Minerals, Metals and Materials Society, 2018.

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