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LIME-ENHANCED CARBOTHERMIC REDUCTION OF CHALCOPYRITE

机译:石灰石的石灰增强碳热还原

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摘要

Lime-enhanced carbothermic reduction may provide an alternative process for treating low grade chaicopyrite concentrates. To date, most research on lime-enhanced reduction has been on pure, synthetic sulfides. In this study, preliminary experiments were carried out on natural chalcopyrite using a thermal analysis system to assess the rate and extent of reaction at several temperatures and identify the major solid and gaseous reaction products. Calculations were performed to establish the thermodynamic limits of the reactions in the temperature range of interest in order to identify the potential conditions for processing chalcopyrite concentrate. The study found that finely ground chalcopyrite can be reduced carbothermically in the presence of lime at moderate temperatures and in a reasonable time to form metallic copper, with the sulphur reporting virtually entirely to calcium sulfide. At temperatures below about 750-770℃ calcium ferrite is the stable form of iron whereas at higher temperatures metallic iron is stable. Further work is required to demonstrate the reaction on a scale to obtain sufficient sample for evaluation of subsequent processing steps to remove the gangue material and iron products from the copper.
机译:石灰增强的碳热还原法可能为处理低品位黄铜矿精矿提供另一种方法。迄今为止,大多数关于石灰强化还原的研究都针对纯合成硫化物。在这项研究中,使用热分析系统对天然黄铜矿进行了初步实验,以评估在几个温度下的反应速率和程度,并确定主要的固体和气体反应产物。为了确定在加工黄铜矿精矿的潜在条件,进行了计算以建立反应在所需温度范围内的热力学极限。研究发现,在适度的温度下,在石灰的存在下,在合理的时间内,可以通过碳热还原细磨的黄铜矿,形成金属铜,而硫几乎全部报告为硫化钙。在低于约750-770℃的温度下,铁酸钙是铁的稳定形式,而在较高温度下,金属铁是稳定的。需要进一步的工作来证明反应规模,以获得足够的样品,以评估随后的加工步骤,以从铜中去除脉石材料和铁产品。

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