Depletion of converter slags to waste in the Vanyukov furnace during pyrometallurgical copper production at JSC Almalyk MMC

M.M. Yakubov, M.M. Yoqubov, D.B. Kholikulov, M.S. Maksudhodjaeva
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Abstract

The article shows the possibility of involving man-made formations in the pyrometallurgical production of copper in the form of slag and clinker-zinc production for the purpose of comprehensive extraction of non-ferrous and precious metals from them at Almalyk MMC JSC. Clinker, a technogenic waste from zinc production, contains a significant amount of reducing elements in the form of metallic iron and carbon, as well as gold in the amount of 2.3 g/t and silver 250 g/t. In research, clinker works as a reducer of magnetite contained in the converter slag during its depletion and in the process of depletion (reduction) of the converter slag, noble metals are extracted into matte, and then into blister copper up to 95-98%. Converter slags from copper production of Almalyk MMC JSC contain 2.0-3.5% copper, and they, as a circulating product, are depleted in a reverberatory furnace with copper extraction of 75%. To increase the yield of copper from converter slag in Vanyukov furnaces, it is necessary to first deplete the converter slag in reduction processes and then transfer it for processing. It was found that using clinker, a technogenic waste from zinc production with a particle size of +5 - -10 mm, the recovery of converter slag in a converter from magnetite to wustite using the developed technology in 10-15 minutes exceeded more than 50.0% (the amount of magnetite decreased from 21.9 % to 9.8%). As a result of processing recovered converter slags in the Vanyukov furnace, it was possible to reduce the copper content in converter slags of copper production from 2.2-3.5% to 0.58-0.72% in waste slag. To increase the yield of copper from converter slag in the reverberatory and Vanyukov furnaces, it is necessary to first deplete the converter slag in reduction processes and then transfer it for processing.
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在 JSC Almalyk MMC 公司的火法冶金铜生产过程中,转炉炉渣在 Vanyukov 炉中的损耗情况
文章介绍了阿尔马利克冶金矿业公司(Almalyk MMC JSC)在火法冶金生产铜的过程中,采用熔渣和熟料锌生产形式,从人造地层中综合提取有色金属和贵金属的可能性。熟料是锌生产过程中产生的技术废物,含有大量金属铁和碳形式的还原元素,以及每吨 2.3 克的金和每吨 250 克的银。在研究中,熟料在转炉熔渣的损耗过程中起着还原转炉熔渣中所含磁铁矿的作用,在转炉熔渣的损耗(还原)过程中,贵金属被提取到锍中,然后被提取到泡铜中,提取率高达 95-98%。Almalyk MMC 股份公司铜矿生产过程中产生的转炉炉渣含铜量为 2.0-3.5%,作为循环产品,转炉炉渣在反射炉中进行贫化,铜萃取率为 75%。为了提高转炉炉渣在 Vanyukov 炉中的铜产量,有必要首先在还原过程中消耗转炉炉渣,然后将其转移到加工过程中。研究发现,使用粒度为 +5 - -10 毫米的锌生产技术废料熟料,在 10-15 分钟内利用所开发的技术将转炉熔渣从磁铁矿转化为硅灰石,转炉熔渣的回收率超过 50.0%(磁铁矿的含量从 21.9% 降至 9.8%)。通过在 Vanyukov 炉中处理回收的转炉炉渣,可以将铜生产转炉炉渣中的铜含量从 2.2-3.5%降至废渣中的 0.58-0.72%。为了提高转炉炉渣在反射炉和万尤科夫炉中的铜产量,有必要首先在还原过程中消耗转炉炉渣,然后将其转移到加工过程中。
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