School of Environmental Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
J Hazard Mater. 2011 Mar 15;187(1-3):393-400. doi: 10.1016/j.jhazmat.2011.01.051. Epub 2011 Jan 18.
Leaching copper from shredded particles of waste printed circuit boards (PCBs) was carried out in sulfuric acid solution using hydrogen peroxide as an oxidant at room temperature. The influence of system variables on copper recovery by leaching was investigated, such as sulfuric concentration, amount of hydrogen peroxide addition, waste PBCs particle size, presence of cupric ion, temperature and time. The results shown that the optimum addition amount was 100mL 15 (wt%) sulfuric acid solution and 10 mL of 30% hydrogen peroxide for leaching 10 g waste PCBs powder with a solid/liquid ratio of 1/10 for 3h at room temperature (∼23 °C). Moreover leaching temperature and initial copper ion concentration had insignificant effect on the leaching recovery of copper. The effect of different particle size of shredded waste PCBs on leaching of copper was investigated under the optimum leaching condition. The results revealed that shredding pieces of waste PCBs smaller than 1mm was efficient and suitable for copper leaching. Then the leaching solution was concentrated to crystallize CuSO(4)·5H(2)O, and crystal liquor was reused for the next cycles.
采用硫酸溶液体系,在室温下,以双氧水作为氧化剂,从废印刷电路板(PCB)的碎粒中浸出铜。研究了系统变量对浸出过程中铜回收的影响,如硫酸浓度、双氧水添加量、废 PCB 颗粒尺寸、铜离子存在、温度和时间。结果表明,在室温(约 23°C)下,最优的添加量为 100mL15%(wt%)硫酸溶液和 10mL30%双氧水,用于浸出 10g 固液比为 1/10 的废 PCB 粉末,浸出时间为 3h。此外,浸出温度和初始铜离子浓度对铜的浸出回收率影响不大。在最佳浸出条件下,研究了不同粒径的碎废 PCB 对铜浸出的影响。结果表明,碎废 PCB 的粒径小于 1mm 时浸出铜的效率高且适宜。然后,将浸出液浓缩结晶 CuSO(4)·5H(2)O,晶化液可用于下一个循环。