Li Jia, Lu Hongzhou, Liu Shushu, Xu Zhenming
School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, PR China.
J Hazard Mater. 2008 May 1;153(1-2):269-75. doi: 10.1016/j.jhazmat.2007.08.047. Epub 2007 Aug 22.
The printed circuit board (PCB) has a metal content of nearly 28% metal, including an abundance of nonferrous metals such as copper, lead, and tin. The purity of precious metals in PCBs is more than 10 times that of rich-content minerals. Therefore, the recycling of PCBs is an important subject, not only from the viewpoint of waste treatment, but also with respect to the recovery of valuable materials. Compared with traditional process the corona electrostatic separation (CES) had no waste water or gas during the process and it had high productivity with a low-energy cost. In this paper, the roll-type corona electrostatic separator was used to separate metals and nonmetals from scraped waste PCBs. The software MATLAB was used to simulate the distribution of electric field in separating space. It was found that, the variations of parameters of electrodes and applied voltages directly influenced the distribution of electric field. Through the correlation of simulated and experimental results, the good separation results were got under the optimized operating parameter: U=20-30 kV, L=L(1)=L(2)=0.21 m, R(1)=0.114, R(2)=0.019 m, theta(1)=20 degrees and theta(2)=60 degrees .
印刷电路板(PCB)的金属含量接近28%,包含大量有色金属,如铜、铅和锡。印刷电路板中贵金属的纯度比富矿中的纯度高出10倍以上。因此,印刷电路板的回收不仅从废物处理的角度来看是一个重要课题,而且在回收有价值材料方面也很重要。与传统工艺相比,电晕静电分离(CES)过程中没有废水或废气,且生产率高、能源成本低。本文采用辊式电晕静电分离器从刮下的废旧印刷电路板中分离金属和非金属。使用软件MATLAB模拟分离空间中的电场分布。发现电极参数和施加电压的变化直接影响电场分布。通过模拟结果与实验结果的相关性,在优化的操作参数下获得了良好的分离结果:U = 20 - 30 kV,L = L(1) = L(2) = 0.21 m,R(1) = 0.114,R(2) = 0.019 m,θ(1) = 20°,θ(2) = 60°。