Impact of mechanical activation and mechanochemical activation on microstructural changes, leaching rate and leachability of natural chalcopyrite

IF 4.9 2区 工程技术 Q1 ENGINEERING, CHEMICAL Minerals Engineering Pub Date : 2024-08-31 DOI:10.1016/j.mineng.2024.108962
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Abstract

The influence of mechanical activation (MA) and mechanochemical activation (MCA) with Fe and Fe2O3 on the microstructural changes, leachability and leaching rate of natural chalcopyrite was investigated and compared. MCA pretreatments were carried out by chalcopyrite co-milling with Fe and Fe2O3 for 20 and 50 min. The XRD analysis indicated that even after 50 min MA and MCA, constituent phases of chalcopyrite, Fe and Fe2O3 could be detectable beside the newly formed bornite. Regarding the peak broadening and peak intensity reduction, MCA generally intensified the microstructural changes of chalcopyrite in comparison with MA. The microstructural study performed by the Rietveld method also proved that all microstructural parameters changed in favor of reactivity, such that the amorphization degree and microstrain were increased to 96 % and 0.164 (%), respectively, while crystallite size was reduced to 14.6 nm after 50 min MCA of chalcopyrite with Fe2O3. It could be concluded from the leaching tests that MCA along with Fe and Fe2O3 addition could promote the leachability and leaching rate of chalcopyrite, as compared to MA and nonactivated chalcopyrite. Although both the MCA of chalcopyrite with Fe and Fe2O3 could enhance copper extractions in the 1 M sulfuric acid leaching tests at 80 °C, Fe addition was slightly more effective than Fe2O3. The results obtained from the kinetic study also revealed that the leaching mechanism of nonactivated chalcopyrite, mechanically activated chalcopyrite and mechanochemically activated chalcopyrite with Fe2O3 changed from diffusion control to chemical control due to MCA with Fe. Finally, the combination of kinetic and microstructural studies proved that all microstructural parameters, except for the microstrain parameters of chalcopyrite MCA with Fe2O3, could be effective in chalcopyrite reactivity promotion.

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机械活化和机械化学活化对天然黄铜矿微观结构变化、浸出率和浸出性的影响
研究并比较了铁和 Fe2O3 的机械活化(MA)和机械化学活化(MCA)对天然黄铜矿的微观结构变化、浸出性和浸出率的影响。黄铜矿与 Fe 和 Fe2O3 共同研磨 20 分钟和 50 分钟后进行 MCA 预处理。XRD 分析表明,即使经过 50 分钟的 MA 和 MCA,在新形成的辉铜矿旁边仍可检测到黄铜矿、铁和 Fe2O3 的组成相。在峰值增宽和峰值强度降低方面,与 MA 相比,MCA 普遍加剧了黄铜矿的微观结构变化。用 Rietveld 方法进行的微观结构研究也证明了所有微观结构参数的变化都有利于反应性,例如黄铜矿与 Fe2O3 的 50 分钟 MCA 后,非晶化度和微应变分别增加到 96 % 和 0.164 (%),而晶粒尺寸则减小到 14.6 nm。从浸出试验中可以得出结论,与 MA 和非活化黄铜矿相比,添加铁和 Fe2O3 的 MCA 可以提高黄铜矿的浸出性和浸出率。虽然在 80 ℃ 的 1 M 硫酸浸出试验中,黄铜矿与铁和 Fe2O3 的 MCA 都能提高铜的萃取率,但加入铁比加入 Fe2O3 更有效。动力学研究的结果还表明,由于加入了 Fe2O3 的机械活化黄铜矿,非活化黄铜矿、机械活化黄铜矿和机械化学活化黄铜矿的浸出机制从扩散控制转变为化学控制。最后,动力学研究与微结构研究相结合证明,除了黄铜矿与 Fe2O3 的机械化学活化的微应变参数外,所有微结构参数都能有效促进黄铜矿的反应活性。
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来源期刊
Minerals Engineering
Minerals Engineering 工程技术-工程:化工
CiteScore
8.70
自引率
18.80%
发文量
519
审稿时长
81 days
期刊介绍: The purpose of the journal is to provide for the rapid publication of topical papers featuring the latest developments in the allied fields of mineral processing and extractive metallurgy. Its wide ranging coverage of research and practical (operating) topics includes physical separation methods, such as comminution, flotation concentration and dewatering, chemical methods such as bio-, hydro-, and electro-metallurgy, analytical techniques, process control, simulation and instrumentation, and mineralogical aspects of processing. Environmental issues, particularly those pertaining to sustainable development, will also be strongly covered.
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