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超声氰化法从难处理银矿石中提取银。

Extraction of silver from a refractory silver ore by sono-cyanidation.

机构信息

Department of Mining Engineering, Faculty of Engineering, S. Demirel University, Isparta, Turkey.

Department of Mining Engineering, Faculty of Engineering, S. Demirel University, Isparta, Turkey.

出版信息

Ultrason Sonochem. 2020 May;63:104965. doi: 10.1016/j.ultsonch.2020.104965. Epub 2020 Jan 9.

Abstract

In this study, effect of ultrasound on silver extraction from a refractory silver ore containing both native silver and various silver sulphide minerals was investigated. Main effects and interaction effects of pulp density, ultrasonic frequency, cyanide concentration, air flow rate and agitation speed on the extraction rate of silver were studied by a two-level fractional factorial experimental design. A few additional cyanidation tests were also conducted to verify the findings of the designed experiments. It was found that the overall extraction yield was varied from 67% to 90% depending on the operating conditions used in the sono-cyanidation tests (48 h). However, it was varied from 63% to 80% by same operating conditions used in the direct cyanidation tests at the same cyanidation time. It was observed that an increase in the ultrasonic frequency has a negligible effect on the silver recovery. More importantly, it was determined that there were insignificant differences between the 24-h sono-cyanidation results and the 48-h direct cyanidation results for each cyanidation conditions. This finding, which is very important from the cyanidation practice standpoint, indicates that the cyanidation time can be reduced up to 50%, or the capacity of an operating silver extraction plant can be increased up to 100% by the sono-cyanidation by the refractory silver ores. In order to describe the rate of silver dissolution in the cyanide solutions, the experimental data were analysed using shrinking core models. It was found that there is a good fit between the experimental data and the models, indicating the rate of silver dissolution in cyanide can be described by a two-stage, porous layer diffusion controlled, shrinking core model.

摘要

在这项研究中,研究了超声对含有自然银和各种硫化银矿物的难处理银矿石中银的提取的影响。通过两水平部分因子实验设计研究了矿浆密度、超声频率、氰化物浓度、空气流量和搅拌速度对银提取率的主要影响和交互影响。还进行了一些额外的氰化试验来验证实验设计的结果。结果发现,根据在超声-氰化试验(48 小时)中使用的操作条件,整体提取率在 67%至 90%之间变化。然而,在相同氰化时间下,直接氰化试验中使用相同的操作条件,提取率在 63%至 80%之间变化。观察到超声频率的增加对银回收的影响可以忽略不计。更重要的是,确定了在每种氰化条件下,24 小时超声-氰化结果与 48 小时直接氰化结果之间没有显着差异。从氰化实践的角度来看,这一发现非常重要,表明可以通过超声-氰化将难处理银矿石的氰化时间缩短 50%,或提高现有银提取厂的产能 100%。为了描述银在氰化物溶液中的溶解速率,使用收缩核模型对实验数据进行了分析。结果发现,实验数据与模型之间有很好的拟合,表明氰化物中银的溶解速率可以用两段式、多孔层扩散控制、收缩核模型来描述。

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