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Scientific Article details

Title Novel fluxing strategy of copper matte smelting and trace metals in E-Waste recycling
ID_Doc 24841
Authors Chen, M; Avarmaa, K; Taskinen, P; Klemettinen, L; Michallik, R; O'Brien, H; Jokilaakso, A
Title Novel fluxing strategy of copper matte smelting and trace metals in E-Waste recycling
Year 2023
Published
DOI 10.1016/j.mineng.2022.107969
Abstract The distribution behavior of trace metals between copper matte and spinel-saturated iron silicate slags was investigated at 1250 degrees C and pSO2 of 0.25 atm at low silica concentrations. The experiments were conducted in magnetite (Fe3O4) spinel crucibles in controlled CO-CO2-SO2-Ar gas mixtures using a high-temperature equili-bration-quenching technique. The concentrations of trace elements in matte, spinel, and slag were quantified by electron probe X-ray microanalysis and laser ablation-inductively coupled plasma-mass spectrometry. The trace metals (Ag, Ni, Co, and Sn) in all phases and their distribution coefficients were calculated as a function of matte grade. Results show that silver and nickel can be effectively recovered into matte, whereas cobalt and tin are predominantly deported into slag and gas phases, respectively. These results augment the fundamental ther-modynamic data of trace metal distributions in copper smelting processes at low-silica fluxing practices.
Author Keywords Minor elements; WEEE; Sustainability; Flash smelting; Fluxing practice; Circular economy
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000903990700002
WoS Category Engineering, Chemical; Mineralogy; Mining & Mineral Processing
Research Area Engineering; Mineralogy; Mining & Mineral Processing
PDF https://doi.org/10.1016/j.mineng.2022.107969
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