First results of using mineral concentration methods for metal recover from technogenically contaminated soils with significant organic concentrations

V. Trusova, O. Kachor, A. S. Alekseev, A. Parshin
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Abstract

The purpose of the article is to present the research results on the application of concentration methods to hazardous waste from the industrial site of the former Vostsibelement battery plant located in the town of Svirsk, Irkutsk region (Russia), which is the facility of accumulated environmental damage. The previous studies have identified significant contents of heavy metals and arsenic that exceed standard values by hundreds and thousands of times in the industrial site soils. This fact determines soil high hazard class – II and III. To reduce the hazard class and decrease the volume of hazardous waste it is proposed to use a recuperative approach, that means to recover some metals and arsenic in order to return them in economic circulation. A spiral concentrator, a shaking table and a centrifugal concentrator were used for gravity concentration of metals and arsenic. The best results were obtained using a shaking table. The latter made it possible to increase the lead content in the concentrate by 22 times as compared to the content in the original sample, arsenic content by 7.7 times, and iron content by 16.7 times. Magnetic concentration of the shaking table middlings made it possible to obtain a concentrate with a high content and recovery of iron, copper and zinc. Despite the fact that the soil waste contains a significant amount of organic matter unlike the case of ore processing, the possibility of successful metal recover and significant reduction of metal concentrations in soil is shown. The proposals for a further waste-recycling scheme are made on the basis of the data obtained.
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使用矿物浓缩法从含有大量有机物的技术污染土壤中回收金属的初步成果
本文旨在介绍对位于俄罗斯伊尔库茨克州斯维尔斯克市的前沃斯特西贝雷门特电池厂工业区的危险废物应用浓缩方法的研究成果,该工业区是造成环境破坏的累积设施。先前的研究发现,该工业区土壤中的重金属和砷含量严重超出标准值数百或数千倍。这一事实决定了土壤的高危等级--II 级和 III 级。为了降低危害等级和减少危险废物的数量,建议采用回收方法,即回收部分金属和砷,使其重新进入经济循环。使用螺旋浓缩机、振动台和离心浓缩机对金属和砷进行重力浓缩。使用振动台取得的效果最好。后者使精矿中的铅含量比原始样本中的含量提高了 22 倍,砷含量提高了 7.7 倍,铁含量提高了 16.7 倍。通过磁力浓缩振动筛中的矿渣,可以获得铁、铜和锌含量和回收率都很高的精矿。尽管与矿石加工不同,土壤废料中含有大量有机物,但仍显示出成功回收金属和显著降低土壤中金属浓度的可能性。根据所获得的数据,对进一步的废物回收计划提出了建议。
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