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Selective recovery and separation of copper and iron from fine materials of electronic waste processing

机译:电子废料加工精细材料的选择性恢复和分离铜和铁

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摘要

As electronic waste (e-waste) is increasing, its by-products such as flue dust and wastewater, which are generated during its treatment process, are also increasing. In this study, the fine material generated in the processing of e-waste by both mechanical and thermal methods was investigated for the effective recovery and separation of valuable metals, including Cu and Fe, using both physical and chemical methods. The Fe in this sample was present mostly as magnetite, as determined by XRD, and was removed by magnetic separation. Three different acid solutions (HNO3, HCl, and H2SO4) were used for selective Cu recovery. All experiments were conducted with varying length of time (1-10 h) and temperature ranges (20-60 degrees C). The kinetics of Cu dissolution in HNO3 was studied, based on the shrinking core model, and the activation energy was about 5.0 kcal/mol. The dissolution of Cu in HNO3 was faster than that of other metals such as Fe and Al. In the case of H2SO4, dissolution of Cu was not observed, while Fe was completely dissolved after about 4 h at 60 degrees C. Based on the results of various leaching and the kinetic study, a two-step process was performed for selective metal recovery. H2SO4 was used to dissolve Fe as the first leaching process and HNO3 was used for Cu dissolution as the second leaching process. Through this two-step process, Fe and Cu leaching efficiencies were obtained at approximately 90% and 98%, respectively.
机译:随着电子废物(电子废物)正在增加,其副产品如烟道粉尘和废水,在其处理过程中产生,也在增加。在该研究中,研究了通过机械和热方法加工在电子废物中产生的细材料,用于使用物理和化学方法的有效回收和分离有价值的金属,包括Cu和Fe。该样品中的Fe主要作为磁铁矿存在,如XRD测定,并通过磁分离除去。三种不同的酸溶液(HNO3,HCl和H 2 SO 4)用于选择性Cu回收。通过不同长度(1-10小时)和温度范围(20-60℃)进行所有实验。研究了基于收缩核心模型的HNO3中Cu溶解的动力学,激活能量为约5.0kcal / mol。在HNO3中溶解的溶解比其他金属如Fe和Al的溶解更快。在H 2 SO 4的情况下,未观察到Cu的溶解,而在60℃下约4小时后,Fe完全溶解。基于各种浸出的结果和动力学研究,进行两步方法以进行选择性金属回收。 H2SO4用于将Fe溶解,因为第一浸出方法和HNO3用于Cu溶解作为第二浸出过程。通过这种两步过程,分别在约90%和98%的情况下获得Fe和Cu浸出效率。

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