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Recovery of heavy metals from waste printed circuit boards: statistical optimization of leaching and residue characterization

机译:废物印刷电路板的重金属恢复:脱水和残留物统计优化

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摘要

Despite attempts to enhance the recycling of waste printed circuit boards (WPCBs), the simultaneous recovery of major metals of WPCBs using an efficient approach is still a great challenge. This study mainly concerned with applying an effective statistical tool to optimize the recovery of metal content (i.e., Cu, Fe, Zn, Pb, Ni, Sn, and Al) embedded in WPCBs using a leaching agent without any additive or oxidative agent. Another target was to optimize a multi-response recovery process by minimizing time, energy, and acid consumption during the leaching. Effective parameters and their levels, including leaching time (20-60 min), temperature (25-45 degrees C), solid to liquid (S/L) ratio (1/8-1/20 g/ml), and acid molarity (1-2.7 M), were optimized. A well-established statistical approach (i.e., response surface methodology (RSM)) was applied to precisely quantify and interpret the effects. General optimum conditions for nine responses were introduced with the desirability of approximate to 85%. Finally, the solid residue of leaching was characterized and results showed the morphology, structure, and composition of the residue content (i.e., polymers and ceramics) remained the same after the leaching, indicating the neutral behavior of the leaching process on these two materials. Also, thermal behavior and phase analysis of the original WPCBs and leaching residue were compared and analyzed.
机译:尽管尝试加强废印刷电路板(WPCB)的回收,但使用有效方法同时恢复WPCB的主要金属仍然是一个巨大的挑战。本研究主要涉及应用有效的统计工具,优化在WPCB中使用没有任何添加剂或氧化剂的浸出剂嵌入WPCB中的金属含量(即Cu,Fe,Zn,Pb,Ni,Sn和Al)的恢复。另一个目标是通过最小化浸出期间的时间,能量和酸消耗来优化多响应恢复过程。有效参数及其水平,包括浸出时间(20-60分钟),温度(25-45℃),固体至液体(S / L)比(1 / 8-1 / 20g / ml)和酸摩尔(1-2.7米)进行了优化。应用了良好的统计方法(即,响应面方法(RSM))以精确量化和解释效果。引入九个反应的一般最佳条件,其近似达到85%。最后,表征了浸出的固体残余物,结果显示了残留物含量(即聚合物和陶瓷)的形态,结构和组成在浸出后保持不变,表明浸出过程对这两种材料的中性行为。此外,比较和分析了原始WPCB和浸出残留物的热行为和相分析。

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