首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Pyrometallurgical Removal of Arsenic from Electrostatic Precipitators Dusts of Copper Smelting
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Pyrometallurgical Removal of Arsenic from Electrostatic Precipitators Dusts of Copper Smelting

机译:从铜冶炼的静电除尘器粉尘中除去砷的灰尘除尘

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This work describes the experimental results of pyrometallurgical removing of arsenic from the dust collected in the electrostatic copper precipitators within the gas cleaning system of a Copper Flash Smelting Furnace. The generation of dust in the copper smelting worldwide ranges from 2 - 15 wt% per ton of a copper concentrate. In Chile, copper smelters produce approximately 110 kt/y of dust with a concentration of arsenic between 1 and 15 wt%. The dust is a complex of metals oxides and sulfurs with copper concentrations greater than 10 wt% and relatively high silver concentrations. Since its high arsenic concentration, it is difficult to recover valuable metals through hydrometallurgical processes or by direct recirculation of the dust in a smelting furnace. Thus, the development of pyrometallurgical processes aimed at reducing the concentration of arsenic in the dust (<0.5 wt%) is the main objective of this study, giving particular attention to the production of a suitable material to be recirculated in operations of copper smelting. The work provides a detailed characterization of the dust including the Quantitative Evaluation of Minerals by Scanning Electron Microscopy (QEMSCAN), Scanning Electron Microscope-Energy Dispersive X-ray Analysis (SEM/EDS), X-Ray Diffraction (XRD), the elemental chemical analysis using Atomic Adsorption (AAS), and X-Ray Fluorescence (X-RF). By considering that arsenic volatilization requires a process of sulfidation-decomposition-oxidation, this work seeks to explore the roasting of mixtures of copper concentrate/dust, sulfur/dust, and pyrrhotite/dust. By the elemental chemical analysis of the mixture after and before the roasting process, the degree of arsenic volatilization was determined. The results indicated the effects of parameters such as roasting temperature, gas flow, gas composition, and the ratio of mixtures (concentrate/dust, sulfur/dust, or pyrrhotite/dust) on the volatilization of arsenic. According to the findings, the concentration of arsenic in the roasted Flash Smelting dust can be reduced to a relatively low level (<0.5 wt%), which allows its recirculation into an smelting process.
机译:这项工作描述了从铜闪光冶炼炉的气体清洁系统内静电铜沉淀器中收集的灰尘的灰尘除去砷的实验结果。在全球熔炼中产生灰尘的灰尘从每吨铜浓缩物的2-15重量%。在智利中,铜冶炼厂产生大约110 kt /叶的灰尘,浓度为1-15wt%。灰尘是金属氧化物和硫的复合物,铜浓度大于10wt%和相对高的银浓度。由于其高砷浓度,因此难以通过液压冶金工艺回收有价值的金属或通过直接再循环熔炼炉中的灰尘。因此,旨在降低灰尘中砷浓度(<0.5wt%)的高温冶金工艺的发展是本研究的主要目的,特别注意在铜冶炼的操作中恢复合适的材料。该工作提供了通过扫描电子显微镜(QEMSCAN),扫描电子显微镜 - 能量分散X射线分析(SEM / EDS),X射线衍射(XRD),X射线衍射(XRD),X射线衍射(XRD),X射线衍射(XRD),X射线衍射(XRD),元素化学使用原子吸附(AAS)和X射线荧光(X-RF)分析。通过考虑砷挥发需要硫化型分解 - 氧化的过程,可以寻求探索铜浓缩物/粉尘,硫/粉尘和粉末菌/灰尘混合物的烘烤。通过混合物的元素化学分析在烘焙过程之后和之前,测定砷挥发程度。结果表明,参数如焙烧温度,气体流动,气体组合物和混合物(浓缩/粉尘,硫/粉尘或染色体/粉尘)的比例效果在砷的挥发上。根据结果​​,烘焙闪蒸冶炼粉尘中砷的浓度可以减少到相对较低的水平(<0.5wt%),这允许其再循环到熔炼过程中。

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