首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >Nickel, lead and antimony distributions between ferrous calcium silicate slag and copper at 1300 deg C
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Nickel, lead and antimony distributions between ferrous calcium silicate slag and copper at 1300 deg C

机译:硅铁酸钙渣和铜在1300摄氏度下的镍,铅和锑分布

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Ferrous calcium silicate (FCS) slag has been proposed as a suitable slag system for continuous copper converting. However, there is little information on the important properties of FCS slag and this must be addressed before such a slag can be properly evaluated for implementation. In this work the slag/metal distribution ratios of lead, antimony and nickel between FCS slag and copper were measured at 1300 deg C and an oxygen partial pressure of 10~(-6) atmosphere. They were found to have values of 0.93, 0.54 and 0.98 respectively. These distribution ratios were compared to reported values for calcium ferrite slag and iron silicate slags, both currently used for continuous copper converting, and predicted values for FCS slag under the same conditions. Ferrous calcium silicate slag was found to be a little more than twice as good as calcium ferrite slag at absorbing lead oxide but very similar in its ability to absorb antimony and nickel oxides. However, it was almost five times poorer than iron silicate slag for absorbing lead oxide, a little poorer for nickel oxide but almost four times better for antimony oxide. The activity coefficients of NiO, PbO and SbO_(1.5) in FCS slag were also calculated and found to be 4.5, 1.4 and 0.6 respectively. In terms of minor element distribution behaviour only, it is concluded that FCS slag warrants closer examination as a replacement for calcium ferrite and iron silicate slags in continuous copper converting.
机译:硅酸亚铁(FCS)炉渣已被提出作为连续铜转化的合适炉渣系统。但是,关于FCS炉渣的重要特性的信息很少,在对此类炉渣进行适当评估以进行实施之前,必须解决这些信息。在这项工作中,在1300℃和10〜(-6)个大气压的氧分压下测量了FCS炉渣与铜之间的铅,锑和镍的炉渣/金属分布比。发现它们的值分别为0.93、0.54和0.98。将这些分布比与目前用于连续铜转化的铁氧体钙渣和硅酸铁渣的报告值以及相同条件下FCS渣的预测值进行比较。发现硅酸亚铁渣在吸收氧化铅方面的性能是铁氧体钙渣的两倍多,但在吸收锑和氧化镍的能力方面却非常相似。但是,它吸收氧化铅的能力比硅酸铁渣差了近五倍,氧化镍差了一点,氧化锑却差了四倍。计算了FCS渣中NiO,PbO和SbO_(1.5)的活度系数,分别为4.5、1.4和0.6。仅就微量元素分布行为而言,得出的结论是,FCS渣值得进一步检查,以代替连续铜转化中的铁酸钙和硅酸铁渣。

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