Chimie ParisTech, CNRS 2027, Institute of Chemistry for Life and Health Sciences, SEISAD, PSL University, 75005, Paris, France.
French Environment and Energy Management Agency, 20, Avenue du Grésillé, BP 90406, 49004, Angers Cedex 01, France.
Anal Bioanal Chem. 2020 Jul;412(19):4595-4608. doi: 10.1007/s00216-020-02707-4. Epub 2020 Jun 4.
Waste printed circuit boards are a major source of strategic materials such as platinum group metals since they are used for the fabrication of technological devices, such as hard drive discs, capacitors, and diodes. Because of the high cost of platinum, palladium, and gold (> 25 k€/kg), an economic and environmental challenge is their recycling from printed circuit boards that represent around 2% weight of electronic equipment. Hydrometallurgical treatments allow the recovery of these metals in solution, with a high recovery rate for a leaching liquor made of thiourea in hydrochloric acid. So as to develop an efficient recycling process from this leach liquor, one requires the speciation of these strategic metals, as well as their extraction and quantitation in the mixture. For this purpose, platinum, palladium, and gold were dissolved in model leach liquors made of hydrochloric acid and thiourea at low concentration. The identification of metal complexes was determined as a function of thiourea concentration (between 10 μmol/L and 10 mmol/L) by the combination of UV-visible spectrometry, cyclic voltammetry, and for the first time capillary electrophoresis. The electrokinetic method was then applied for the quantitation of trace metal analyses in leach samples from waste printed circuit boards reprocessing, demonstrating its applicability for industrializable recycling applications. Graphical abstract.
废弃印刷电路板是铂族金属等战略材料的主要来源,因为它们被用于制造技术设备,如硬盘驱动器、电容器和二极管。由于铂、钯和金的成本很高(>25 千欧元/公斤),因此从占电子设备重量约 2%的印刷电路板中回收这些金属是一个经济和环境方面的挑战。湿法冶金处理可以将这些金属回收在溶液中,对于由盐酸和硫脲制成的浸出液,回收率很高。为了从这种浸出液中开发出一种有效的回收工艺,需要对这些战略金属进行形态分析,以及在混合物中对其进行萃取和定量。为此,将铂、钯和金溶解在由盐酸和硫脲组成的模型浸出液中,浓度较低。通过将紫外可见光谱、循环伏安法和首次毛细管电泳相结合,根据硫脲浓度(10 μmol/L 至 10 mmol/L 之间)确定金属配合物的鉴定。然后,应用电动方法对从废弃印刷电路板再加工的浸出样品中的痕量金属分析进行定量,证明其适用于工业化回收应用。