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Behavior of Nickel as a Trace Element and Time-Dependent Formation of Spinels in WEEE Smelting

机译:镍作为痕量元素和时间依赖性形成的尖晶石冶炼

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For better understanding and maximal value utilization of the WEEE smelting process, the behavior and distribution of different trace elements must be known. In this study, the behavior of nickel as a trace element was studied in an equilibrium system with metallic copper - spinel saturated iron silicate slag (with 3 wt-% K_2O) - iron aluminous spinel - gas. The experiments were conducted in alumina crucibles at 1300 °C, in oxygen pressure range of 10~(-10)-10~(-5) atm. A time series of 15-60 min experiments was also conducted for investigating the formation rate of the primary spinel phase in the system. The results show that the distribution coefficient of nickel between metallic copper and liquid slag changes from approximately 70 to 0.4 along the increasing oxygen pressure range. In addition, a significant part of the nickel deports into the spinel phase. The spinel formation was investigated based on composition analysis results and visual observations from SEM-images.
机译:为了更好地理解和最大值利用WEEE冶炼过程,必须知道不同痕量元素的行为和分布。在该研究中,在具有金属铜 - 尖晶石饱和铁硅酸盐渣的平衡系统中研究了镍作为痕量元素的行为(用3wt-%K_2O) - 铁铝晶锭 - 气体。实验在1300℃下在氧化铝坩埚中进行,在10〜( - 10)-10〜(-5)ATM的氧气压力范围内。还进行了15-60分钟实验的时间序列,用于研究系统中初级尖晶石相的形成速率。结果表明,金属铜和液渣之间的镍分布系数沿着增加的氧气压力范围的大约70至0.4。另外,镍的重要部分被驱逐到尖晶石相中。基于组成分析结果和来自SEM图像的视觉观察研究了尖晶石形成。

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