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SOLUTE INTERACTIONS WITH DISSOLVED OXYGEN IN MOLTEN COPPER SYSTEMS

机译:熔融铜系统中溶解氧与溶氧的相互作用

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摘要

In fire refining of copper, the affinities of various impurity elements on dissolved oxygen is of great significance. Further, in the design of oxygen probes in liquid copper, the influence of solute interactions on the activity of oxygen need to be considered in order to evaluate the oxygen concentration in molten copper. The present paper presents a series of measurements of the activities of oxygen in liquid Cu-M-O alloys (where M stands for Mn, Zn, As, Se or Te) carried out by the present group employing the solid electrolyte galvanic cell technique. Extreme care was taken to control the oxygen potentials in the inert gas atmosphere, and to keep the oxygen levels very low in the molten metal. The oxygen content was determined by analysis of the samples taken out from the melt. The results obtained showed that Mn has a strong negative influence on the activity coefficient of oxygen in liquid copper. A similar, but less prominent effect was observed in the case of Zn. Arsenic had no influence on the activity of oxygen in Cu (liq.). Se and Te had slight negative effect on oxygen activities in copper at X_O >10~(-5), while at lower oxygen levels the interaction coefficients were found to be positive. The results obtained were compared with empirical models for the calculation of interaction coefficients available in literature.
机译:在铜的火精制中,各种杂质元素对溶解氧的亲和性具有重要意义。此外,在设计液态铜中的氧气探针时,需要考虑溶质相互作用对氧气活性的影响,以便评估熔融铜中的氧气浓度。本文介绍了由本小组采用固体电解质原电池技术对液态Cu-M-O合金中的氧活度进行的一系列测量(其中M代表Mn,Zn,As,Se或Te)。要格外小心,以控制惰性气体气氛中的氧势,并保持熔融金属中的氧含量非常低。通过分析从熔体中取出的样品来确定氧含量。所得结果表明,Mn对液态铜中氧的活度系数具有强烈的负面影响。在锌的情况下,观察到类似但不太明显的作用。砷对铜中的氧活度没有影响。当X_O> 10〜(-5)时,Se和Te对铜的氧活度有轻微的负面影响,而在较低的氧浓度下,交互作用系数为正。将获得的结果与经验模型进行比较,以计算文献中可获得的相互作用系数。

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