Research Group of Waste Management and Sustainable Technologies, Institute of Chemical Process Fundamentals of the Czech Academy of Sciences, Rozvojová 135, 165 00 Prague, The Czech Republic.
Research Group of Waste Management and Sustainable Technologies, Institute of Chemical Process Fundamentals of the Czech Academy of Sciences, Rozvojová 135, 165 00 Prague, The Czech Republic.
Waste Manag. 2024 Feb 15;174:539-548. doi: 10.1016/j.wasman.2023.12.030. Epub 2023 Dec 21.
Municipal solid waste incineration bottom ash has emerged as a secondary source of valuable metals, including aluminum and copper. Specifically, the fine fraction, with a particle size less than two millimeters, exhibits average grades of 2.5 g/kg for copper and 10.0 g/kg for elemental aluminum. Gravimetric concentration equipment, such as wet shaking tables, is widely used in the mining and recycling industries to concentrate materials based on density. However, the optimization of these devices typically relies on a trial-and-error approach. This paper presents a statistical model that optimizes the crucial working parameters of the wet shaking table for recovering elemental aluminum in a light product mineral matrix and copper in a high-density product. The statistical analysis highlights that upper values of shaking amplitude are beneficial for both the recovery and grade of copper and aluminum in the obtained products. Conversely, variations in other parameters, such as wash water or desk tilt, yield contrasting effects on grade and recovery. By precisely adjusting the working parameters of the device, the analyses demonstrate that copper enrichment of up to 45 times can be achieved in the product smaller than 500 µm and up to 15 times in the 500-2000 µm product, resulting in the recovery of approximately 65 % of the total copper.
城市固体废物焚烧底灰已成为有价值金属(如铝和铜)的二次资源。具体来说,粒径小于 2 毫米的细颗粒中,铜的平均品位为 2.5g/kg,元素铝的平均品位为 10.0g/kg。在采矿和回收行业中,广泛使用重力浓缩设备(如湿式摇床)根据密度来浓缩物料。然而,这些设备的优化通常依赖于试错法。本文提出了一种统计模型,用于优化湿式摇床的关键工作参数,以从轻产品矿物基质中回收元素铝和从高密度产品中回收铜。统计分析表明,较大的摇床振幅有利于提高获得产品中铜和铝的回收率和品位。相反,其他参数(如冲洗水或摇床倾斜)的变化对品位和回收率有相反的影响。通过精确调整设备的工作参数,分析表明,在小于 500μm 的产品中,铜的富集倍数可高达 45 倍,在 500-2000μm 的产品中,可高达 15 倍,从而回收了大约 65%的总铜。