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采用超临界水结合电动过程从废印刷电路板制备尺寸可控的 Cu2O 纳米粒子。

Size-controlled preparation of Cu2O nanoparticles from waste printed circuit boards by supercritical water combined with electrokinetic process.

机构信息

Department of Environment and Equipment Engineering, Fujian University of Technology, Fuzhou 350108, People's Republic of China.

出版信息

J Hazard Mater. 2012 Sep 30;233-234:200-6. doi: 10.1016/j.jhazmat.2012.07.019. Epub 2012 Jul 13.

Abstract

In this work, an effective and size-controlled process for preparing Cu(2)O nanomaterials from waste PCBs by supercritical water (SCW) combined with electrokinetic (EK) technique was developed. SCW was used for the pretreatment of waste PCBs, and highly uniform and monodisperse Cu(2)O nanoparticles with different sizes were prepared successfully from waste PCBs in EK process. Cu(2)O nanoparticles with average sizes of 5, 11, 25 and 40 nm could be prepared in the presence of nanoparticles stabilizer (PVP) with the concentrations of 40, 30, 20 and 10 g/L, respectively. The average size of Cu(2)O nanoparticles decreased from 49.5 to 18.2 nm when current density increased from 10 to 20 mA/cm(2), and the size uniformity of nanoparticles was improved distinctly at a higher current density. The size of Cu(2)O nanoparticles increased with the increase of EK time, and agglomeration of particles was observed after 8h EK reaction. Up to 90 wt% of the Cu in waste PCBs could be recovered as Cu(2)O nanoparticles under optimized condition. It is believed that the process developed in this study is simple and practical for size-controlled preparation of nanomaterials from waste PCBs or other Cu-rich solid wastes.

摘要

在这项工作中,开发了一种从废电路板中通过超临界水(SCW)结合电动(EK)技术制备 Cu(2)O 纳米材料的有效且可控尺寸的方法。SCW 用于废电路板的预处理,并且可以在 EK 过程中从废电路板中成功制备出具有不同尺寸的高度均匀和单分散的 Cu(2)O 纳米粒子。在纳米粒子稳定剂(PVP)的浓度分别为 40、30、20 和 10 g/L 的情况下,可以制备出平均尺寸为 5、11、25 和 40 nm 的 Cu(2)O 纳米粒子。当电流密度从 10 增加到 20 mA/cm(2)时,Cu(2)O 纳米粒子的平均尺寸从 49.5 减小到 18.2 nm,并且在更高的电流密度下,纳米粒子的尺寸均匀性明显提高。纳米粒子的尺寸随着 EK 时间的增加而增加,并且在 8 h 的 EK 反应后观察到颗粒团聚。在优化条件下,废电路板中高达 90 wt%的 Cu 可以被回收为 Cu(2)O 纳米粒子。可以相信,本研究中开发的工艺对于从废电路板或其他富 Cu 固体废料中制备纳米材料的尺寸控制是简单实用的。

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