Optimizing the crystalline state of cu slag by na2 co3 to improve cu recovery by flotation

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Abstract

Cu is the most important component in Cu slag, which is usually recovered by flotation. However, the crystalline state of Cu slag is not conducive to flotation, which limits the recovery of Cu. This study investigated the effect of Na2 CO3 on the crystalline state of Cu slag and the recovery of Cu by flotation. The mechanism was investigated by thermodynamic, viscosity, X-ray diffraction (XRD) analyses and scanning electron microscopy (SEM). The results of thermodynamic, viscosity and XRD analysis demonstrate that Na2 CO3 is beneficial for the transformation of fayalite to low-melting point materials, such as Na2 SiO3, Na4 SiO4 and NaFeSi3 O6, thereby reducing the viscosity of Cu slag. Moreover, SEM results indicate that the addition of Na2 CO3 during the melting modification process can promote the aggregation of Cu-bearing minerals and simplify its intercalation relationship with gangue minerals. The flotation results verify the above conclusions that at 10% Na2 CO3, the Cu flotation recovery index is the best. Compared with that without Na2 CO3, the use of Na2 CO3 has resulted in increased Cu grade and recovery by 3.544% and 28.94%, respectively.

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Liu, R., Zhai, Q., Wang, C., Li, X., & Sun, W. (2020). Optimizing the crystalline state of cu slag by na2 co3 to improve cu recovery by flotation. Minerals, 10(9), 1–15. https://doi.org/10.3390/min10090820

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