A Hydrometallurgical Process for Cu Recovery from Printed Circuit Boards

Dimitrios Vlasopoulos, Paschalis Oustadakis, S. Agatzini-Leonardou, P. Tsakiridis, E. Remoundaki
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引用次数: 1

Abstract

The current study presents an effort to develop a sustainable hydrometallurgical process for the recovery of copper from waste printed circuit boards (PCBs) to be applied at local small to medium industrial units. The process aims to separate and recover copper from filter dust produced during the crushing of PCBs using a hammer mill in a recycling facility. Due to the high plastic content in the dust (approximately 30% w/w), the metal fraction was separated gravimetrically, and the material originated consisted mainly of Cu (23.8%), Fe (17.8%), Sn (12.7%), Pb (6.3%), Zn (3.4%), Al (3.3%), Mn (1.6%), and Ni (1.5%). Prior to copper recovery, the dust was leached with HCl as a pretreatment step. During this step, more than 80% of iron, zinc, and tin were leached out. The resulting solid consisted mainly of Cu (37.6%) and Fe (10.7%), leading to a copper enrichment of around 60% in the powder. The leaching of copper was conducted in a two-step process using H2SO4 as a leaching agent with the addition of H2O2 as an oxidizing agent. The experimental conditions had low energy requirements (no heating or agitation needed). The leaching of Cu reached 98%. Despite the pretreatment step, the concentration of other metals (Fe, Zn, Ni) in the pregnant solution was too high to proceed to electrowining. Therefore, the organic solvent ACORGA M5640 was selected for the extraction of copper from the pregnant solution. The extraction was conducted in two stages at pH equilibrium 1.5, and the loaded organic phase was stripped with HCl in two steps. The strip liquor was suitable for electrowinning.
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一种从印刷电路板中回收铜的湿法冶金工艺
目前的研究提出了一项努力,以开发一种可持续的湿法冶金工艺,用于从废弃印刷电路板(pcb)中回收铜,以应用于当地的中小型工业单位。该工艺旨在分离和回收在回收设施中使用锤磨机粉碎pcb时产生的过滤粉尘中的铜。由于粉尘中塑料含量较高(约30% w/w),对金属组分进行了重分离,物料来源主要为Cu(23.8%)、Fe(17.8%)、Sn(12.7%)、Pb(6.3%)、Zn(3.4%)、Al(3.3%)、Mn(1.6%)和Ni(1.5%)。在回收铜之前,用盐酸浸出粉尘作为预处理步骤。在这一步骤中,超过80%的铁、锌和锡被浸出。所得固体主要由Cu(37.6%)和Fe(10.7%)组成,导致粉末中铜的富集量约为60%。以H2SO4为浸出剂,H2O2为氧化剂,采用两步法对铜进行浸出。实验条件具有低能量要求(不需要加热或搅拌)。铜的浸出率达到98%。尽管有预处理步骤,但孕液中其他金属(Fe, Zn, Ni)的浓度过高,无法进行电积。因此,选择有机溶剂ACORGA M5640从孕液中提取铜。在pH平衡为1.5的条件下,分两步萃取,用HCl对负载的有机相进行剥离。该带钢液适用于电积。
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