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首页> 外文期刊>Hydrometallurgy >Copper and arsenic dissolution from chalcopyrite-enargite concentrate by sulfidation and pressure leaching in H2SO4-O2
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Copper and arsenic dissolution from chalcopyrite-enargite concentrate by sulfidation and pressure leaching in H2SO4-O2

机译:在H2SO4-O2中通过硫化和加压浸出从黄铜矿-磁铁矿精矿中溶解铜和砷

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摘要

A new alternative to copper production from a chalcopyrite-enargite concentrate by sulfidation (heating of the concentrate with elemental sulfur) followed by pressure leaching of the sulfidized material has been studied.The sulfidation of the mixed concentrate with elemental sulfur in the range of 350-400 degC produced a rapid mineralogical transformation of chalcopyrite into covellite (CuS) and pyrite (FeS_2) phases without transforming the enargite. In the pressure leaching of the sulfidized chalcopyrite-enargite concentrate, the variable that influenced most was the temperature in the range of 125-180 degC, while the partial pressure of oxygen affected little the copper dissolution rate in the range of 507-1520 kPa. The rate of dissolution of copper from the enargite in the mixed sulfidized concentrate was shown to be faster than the rate of dissolution of copper from pure enargite concentrate, 90pecent and 10pecent in 30 min, respectively, due to a galvanic couple with the pyrite or the indirect leaching by ferric ions. The shrinking core model with chemical reaction control was used to determine the activation energy for the dissolution of arsenic from the mixed chalcopyrite enargite sulfidized concentrate. The determined value was 71 kJ/mol.
机译:研究了一种新的方法来替代黄铜矿-黄铜矿精矿中的铜,方法是先进行硫化(将精矿与元素硫加热),然后加压浸出硫化后的材料。将混合精矿与元素硫的硫化范围为350- 400℃产生的黄铜矿快速矿物学转变为铜铁矿(CuS)和黄铁矿(FeS_2)相,而没有转变成辉镁石。在硫化黄铜矿-钙锰矿精矿的压力浸出中,影响最大的变量是温度在125-180℃之间,而氧分压在507-1520 kPa范围内对铜的溶出速率影响很小。结果表明,由于与黄铁矿或黄铁矿的电流偶合,在混合的硫化精矿中铜从溶辉石中溶解的速率分别比在30分钟内分别从90%和10%的纯硬铝酸盐浓缩物中的溶解速率快。铁离子间接浸出。使用具有化学反应控制的收缩核模型来确定活化能量,以从混合的黄铜矿珐琅矿硫化精矿中溶解砷。测定值为71kJ / mol。

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