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Quantification of the liquidus surface of 'lime ferrite' slags at several oxygen potentials

机译:在几种氧气电位下定量“石灰铁氧体”渣的液相化表面

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"Lime ferrite" slag with limited silica content has proven to be a valuable choice in the modern processes of copper smelting and convening due to several advantages that this slag offers compared to classical silicate slags. Nevertheless the liquidus surface of this slag has been experimentally measured only at low oxygen potentials such as in equilibrium with iron or near it and in air. Although most of the smelting and converting processes that use this slag occur at intermediate oxygen potentials, the liquidus surface of this slag is not known at these conditions and the effect of oxygen potential and silica has not been correctly understood. This has brought some confusion in literature as well as in the industrial practice. In this work the liquidus surface of the calcium ferrite slags has been quantified by the means of a new thermophysicochemical model and a new type of liquidus surface diagrams which are very convenient for any industrial process that uses calcium ferrite slags. These diagrams can be easily used to select the lowest liquidus temperature of calcium ferrite slags at a minimum cost and can help design several fluxing strategies in copper smelting and converting processes. The effect of the oxygen potential and silica is also quantified and important industrially related conclusions are drawn.
机译:“石灰铁氧体”渣中有限的二氧化硅含量已被证明是在现代铜冶炼过程中的有价值的选择,并且由于这种渣渣的几个优点而召开的铜冶炼和召集的召开。然而,该炉渣的液相表面仅在低氧电位下实验测量,例如在与铁或附近和空气中的平衡。尽管使用该渣的大多数熔炼和转化过程发生在中间氧气电位,但在这些条件下不知道该炉渣的液相表面,并且氧气电位和二氧化硅的效果尚未正确理解。这带来了一些困惑文学以及工业实践。在这项工作中,通过新的热药物化学模型和新型液相型表面图量化了钙铁氧体渣的液相化,这对于任何使用钙铁氧体渣的任何工业过程都非常方便。这些图可以容易地用于以最小的成本选择钙铁氧体渣的最低液体温度,并且可以帮助在铜冶炼和转换过程中设计几种助焊策略。氧气潜力和二氧化硅的效果也是量化的,并且绘制了重要的工业相关的结论。

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