Reduction of chromium oxides in stainless steel dust

来源 :International Journal of Minerals Metallurgy and Materials | 被引量 : 0次 | 上传用户:yueyegg
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The recovery of metal oxides from stainless steel dust using C(graphite), SiFe, and Al as reductants was investigated under various conditions. The apparent distribution ratio of Cr(L m/s ′ Cr) in the recovered metal and residual slag phases was defined as the major performance metric. The results show that the recovery ratio of metals increases as the ratio of CaO :SiO2 by mass in the residual slag increases to 1.17. The residual content of metals in the slag decreases as the Al2O3 content of the slag is increased from approximately 8wt% to 10wt%. The recovery ratio of Cr increases with increasing L m/s ′ Cr, and a linear relationship between L m/s ′ Cr and the activity coefficient ratio of CrO in the slag and the recovered metal phase is observed. The combination of C and SiFe or Al as the reducing agents reveals that Si is the more effective coreductant. The recovery of metal oxides from stainless steel dust using C (graphite), SiFe, and Al as reductants was investigated under various conditions. The apparent distribution ratio of Cr (L m / s’ Cr) in the recovered metal and residual slag phases was The results show that the recovery ratio of metals increases as the ratio of CaO: SiO2 by mass in the residual slag increases to 1.17. The residual content of metals in the slag decreases as the Al2O3 content of the slag The recovery ratio of Cr increases with increasing L m / s ’Cr, and a linear relationship between L m / s’ Cr and the activity coefficient ratio of CrO in the slag and the recovered metal The combination of C and SiFe or Al as the reducing agent reveals that Si is the more effective coreductant.
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