College of Chemical and Biological Engineering, Shandong University of Science and Technology, Qingdao, Shandong 266590, China.
College of Chemical and Biological Engineering, Shandong University of Science and Technology, Qingdao, Shandong 266590, China.
Waste Manag. 2022 Nov;153:167-177. doi: 10.1016/j.wasman.2022.08.028. Epub 2022 Sep 11.
Flotation is an attractive method for separating the different components of waste printed circuit boards (WPCBs) due to its cleanliness and efficiency. Non-metallic particles (NMPs) with good floatability usually need to be floated, however, it is difficult to achieve complete removal. The effect of particle size on the flotation behavior of NMPs, which is usually ignored in previous studies, is concerned in this paper. Flotation tests and kinetic analysis were carried out to reveal the effect of reagent dosage on flotation characteristics of particles in narrow size fractions. As the fineness decreases, the particles are more likely to be floated. Equally, the finer the particle size, the lower the reagent dosage required to achieve the maximum recovery. For 1-0.5 mm and -0.045 mm, the maximum recovery increased from 42.16% (1500 g/t MIBC) to 97.31% (100 g/t MIBC). Therefore, the feasibility of reducing particle size by grinding to improve floatability was verified. The results show that the reduction of particle size can significantly promote its efficiency of being floated. After grinding treatment, -0.045 mm yields in each size fraction (1-0.5, 0.5-0.25, 0.25-0.125, 0.125-0.074, 0.074-0.045 mm) increased by 22.10%, 28.42%, 30.90%, 64.56%, 89.32%, resulting in an increase of 37.71%, 13.12%, 2.82%, 7.82% and 2.00% in maximum recovery, respectively. It is also proved that the particle size, rather than the resin content, has a more significant effect on the floatability of NMPs.
浮选是一种有吸引力的方法,用于分离废印刷电路板 (WPCB) 的不同组件,因为它具有清洁和高效的特点。具有良好浮选性能的非金属颗粒 (NMP) 通常需要浮选,但很难实现完全去除。本文关注的是以前研究中通常被忽略的颗粒尺寸对 NMP 浮选行为的影响。进行浮选试验和动力学分析,以揭示药剂用量对窄粒级颗粒浮选特性的影响。随着细度的降低,颗粒越容易被浮选。同样,颗粒越细,达到最大回收率所需的药剂用量越低。对于 1-0.5mm 和-0.045mm,最大回收率从 42.16%(1500g/tMIBC)增加到 97.31%(100g/tMIBC)。因此,通过研磨减小粒径以提高可浮性的可行性得到了验证。结果表明,减小粒径可以显著提高其浮选效率。经过研磨处理后,每个粒径(1-0.5mm、0.5-0.25mm、0.25-0.125mm、0.125-0.074mm、0.074-0.045mm)的-0.045mm 产率分别提高了 22.10%、28.42%、30.90%、64.56%、89.32%,最大回收率分别提高了 37.71%、13.12%、2.82%、7.82%和 2.00%。还证明了粒径而不是树脂含量对 NMP 可浮性的影响更为显著。