大功率电磁脉冲在含金矿物配合物分解中的应用

V. Chanturiya, I. Bunin, A. Kovalev
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引用次数: 1

摘要

高功率电磁脉冲(HPEMP)辐照在耐蚀含金矿石选矿中的应用似乎很有吸引力,因为该技术可显著提高贵金属回收率(金30-80%,银20-50%),从而有助于降低能耗和产品成本。本文研究了在高电场强度ii~107 V/m的纳秒级HPEMP作用下矿物颗粒的崩解机理。实验数据证实了脉冲辐射在浸出液中形成的击穿通道和矿物配合物的选择性崩解,使得浸出液有效地接近贵金属颗粒,提高了浸出液中贵金属的回收率。研究了HPEMP对俄罗斯某难选含金银矿石及选矿产品颗粒工艺性能的影响。对某矿床重精矿进行一系列HPEMP预处理后,氰化阶段浸出金、银的浸出率显著提高,金的回收率提高了-31%(从空白试验的51.2%提高到辐照后的82.3%),银的回收率提高了47%(从21.8%提高到68.8%)。两个综合采选厂陈旧含金尾矿经脉冲辐照后金的回收率由8-12%提高到80-90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of High-Power Electromagnetic Pulses to Desintegration of Gold-Containing Mineral Complexes
The application of High-Power Electromagnetic Pulses (HPEMP) irradiation in dressing of resistant gold- containing ores appears attractive as this technique provides for a significant increase in precious metal recovery (30-80% for gold and 20-50% for silver), therewith helping reduce both energy consumption and the cost of products. This study deals with plausible mechanisms of disintegration of mineral particles under the action of nanosecond HPEMP with high electric field strength ii~107 V/m. Experimental data are presented to confirm the formation of breakdown channels and selective disintegration of mineral complexes as a result of pulse irradiation, which makes for efficient access of lixiviant solutions to precious metal grains and enhanced precious metal recovery into lixivia during leaching. We studied the influence of HPEMP on the technological properties of particles of refractory gold- and silver-containing ores and beneficiation products from Russian deposits. Preliminary processing of gravity concentrate of one deposit ore with a series of HPEMP resulted in significant increase of gold and silver extraction into lixivia during the cyanidation stage, with gold recovery increased by -31% (from 51.2% in a blank test to 82.3% after irradiation) and silver recovery increased by 47% (from 21.8% to 68.8%). Gold recovery from stale gold-containing dressing tailings of the two integrated mining-and-dressing works increased after pulses-irradiation from 8-12% to 80-90%.
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