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碱性浸取改性提高从废弃印刷电路板中回收金属的浮选效率

Enhanced flotation efficiency of metal from waste printed circuit boards modified by alkaline immersion.

机构信息

Key Laboratory of Coal Processing and Efficient Utilization of Ministry of Education, School of Chemical Engineering and Technology, China University of Mining and Technology, Xuzhou 221116, China.

Key Laboratory of Coal Processing and Efficient Utilization of Ministry of Education, School of Chemical Engineering and Technology, China University of Mining and Technology, Xuzhou 221116, China.

出版信息

Waste Manag. 2021 Feb 1;120:795-804. doi: 10.1016/j.wasman.2020.11.002. Epub 2020 Nov 22.

Abstract

Efficient recycling of waste printed circuit boards by flotation has become a research focus. In this study, waste printed circuit boards were treated by alkaline immersion to enhance the flotation efficiency. Firstly, the SEM-EDS analysis of the crushed products shown that metal and nonmetal were completely liberated in the -0.25 mm fraction. When the printed circuit boards were modified by alkaline immersion, the recovery of metal increased from 64.34% to 72.35%. Further, the mixture of metal and nonmetal at the edge of nonmetal was discovered by EPMA. This was the cause of metal loss during the flotation process. Secondly, by adjusting the alkaline immersion time and pH value, a good flotation effect was achieved at 40 min alkaline immersion time and the pH = 11. Meanwhile, the XPS analysis of nonmetal found that the intensity of the OH peak was significantly enhanced, while the intensity of the O peak was evidently decreased. The change of the resin molecular structure indicated that the O linked to the benzene ring was broken under the action of alkaline immersion, resulting a free bond was generated on the benzene ring. This made the free OH adsorb to the free bond. This conduct promoted the dispersion of nonmetal in the slurry due to the increased nonmetal surface energy and metal hydrophilicity. Thus, this study provides a new route to improve the flotation efficiency of waste printed circuit boards.

摘要

高效回收废弃印刷电路板的浮选法已成为研究热点。本研究采用碱性浸出法处理废弃印刷电路板以提高浮选效率。首先,粉碎产物的 SEM-EDS 分析表明,-0.25mm 粒级中金属和非金属完全解离。碱性浸出改性后,金属回收率从 64.34%提高到 72.35%。此外,电子探针微区分析发现非导体边缘处的金属和非金属混合。这是非金属在浮选过程中损失的原因。其次,通过调整碱性浸出时间和 pH 值,在 40min 碱性浸出时间和 pH=11 时可获得良好的浮选效果。同时,非导体的 XPS 分析发现 OH 峰的强度显著增强,而 O 峰的强度明显降低。树脂分子结构的变化表明,在碱性浸出的作用下,与苯环相连的 O 键断裂,苯环上产生自由键。这使得游离的 OH 吸附在自由键上。这导致由于非导体表面能的增加和金属亲水性的提高,非导体在浆料中的分散性得到改善。因此,本研究为提高废弃印刷电路板的浮选效率提供了新途径。

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