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首页> 外文期刊>Materials transactions >Distribution of Minor Elements between Calcium Ferrite Slag and Copper Matte at 1523 K under High Partial Pressure of SO_2
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Distribution of Minor Elements between Calcium Ferrite Slag and Copper Matte at 1523 K under High Partial Pressure of SO_2

机译:SO_2高分压下1523 K下铁素体钙渣和铜雾中微量元素的分布

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As a fundamental study for the oxygen-blowing copper smelting, the distribution ratio of some minor elements such as Ag, Pb, As, Sb and Bi between calcium ferrite slag and copper matte was investigated at 1523 K under the partial pressures of SO_2 with 10.1, 50.7 and 101.3 kPa, using the sulfur reservoir for controlling the partial pressure of S_2. When the distribution ratio, L_X~(s/m), is defined as (mass percent X in slag) / (mass percent X in matte), _X~(s/m) was found to change considerably with matte grade (mass percent X in matte). L_(As)~(s/m) and L_(Sb)~(s/m) decreased remarkably in the range of high matte grade while L_(Bi)~(s/m) increased. L_(Ag)~(s/m) and L_(Pb)~(s/m) decreased gradually with increasing matte grade up to 75-77 mass percent and increased abruptly in the range of higher matte grade. It was clarified that the distribution ratios of Pb, As, Sb and Bi increased remarkably with P_(SO_2), and that the proportion of these elements in the slag phase increased with increasing oxygen-enrichment. The results obtained were analyzed successfully by assuming a mutual reaction between a metallic species in the matte and an oxide species in the slag for As, Sb and Bi, while for Ag and Pb the equilibrating of mutual reaction between the metallic species in the matte and sulfide species in the slag at the low matte grade was suggested.
机译:作为吹氧炼铜的基础研究,研究了1523 K,SO_2分压为10.1的条件下,铁,钙,铁,钙等次要元素在银,铁,钙,铁中的分布比例。分别为50.7和101.3 kPa,使用硫储存器控制S_2的分压。当分配比L_X〜(s / m)定义为(渣中X的质量百分比)/(冰沙中的X质量百分比)时,发现_X〜(s / m)随冰沙等级(质量百分比)而变化很大X(无光泽)。在高雾面等级范围内,L_(As)〜(s / m)和L_(Sb)〜(s / m)明显降低,而L_(Bi)〜(s / m)增加。 L_(Ag)〜(s / m)和L_(Pb)〜(s / m)随着雾面等级的增加而逐渐降低,达到75-77质量%,而在较高雾面等级的范围内突然增加。可以看出,随着P_(SO_2)的增加,Pb,As,Sb和Bi的分布比显着增加,并且随着氧含量的增加,这些元素在炉渣相中的比例也随之增加。通过假设无光泽的金属物质与炉渣中的氧化物物质之间的相互反应,成功地分析了As,Sb和Bi,而对于Ag和Pb,无光泽的金属物质与金属中的相互反应达到平衡建议使用低雾度等级的矿渣中的硫化物。

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