Department of Civil and Environmental Engineering, University of Ulsan , Daehakro 93, Namgu, Ulsan 680-749, Republic of Korea.
Environ Sci Technol. 2016 Oct 4;50(19):10580-10587. doi: 10.1021/acs.est.6b02280. Epub 2016 Sep 22.
This study reports simple, selective, and sustainable separation of chlorinated plastic (polyvinyl chloride, PVC) and acrylonitrile butadiene styrene (ABS) containing brominated flame retardants (BFRs) from mixed waste electrical and electronic equipment (WEEE) plastics using microwave and/or mild-heat treatment. Microwave treatment after plastic coating with powdered activated carbon (PAC) selectively increased the hydrophilicity of the PVC surface, which facilitated PVC separation (100% recovery and purity) from the WEEE plastic mixture under the optimum flotation conditions. A further mild-heat treatment for 100 s facilitated selective separation with the highest recovery and purity (100%) of PAC-coated ABS containing BFRs from the remaining plastic mixture due to selective formation of a twisted structure with a lower density than water and the untreated ABS. Mild-heat treatment only of PAC-coated WEEE plastic mixture resulted in successful recovery of (100%) the ABS and PVC. However, the recovered PVC had slightly reduced purity (96.8%) as compared to that obtained using the combined heat and microwave treatments. The combination of both treatments with flotation facilitated selective and sustainable separation of PVC and ABS from WEEE plastics to improve their recycling quality.
本研究报告了一种简单、选择性强且可持续的方法,通过微波和/或温和加热处理,从混合废弃电子电气设备(WEEE)塑料中分离出含溴阻燃剂(BFR)的氯塑料(聚氯乙烯,PVC)和丙烯腈-丁二烯-苯乙烯(ABS)。对涂有粉末状活性炭(PAC)的塑料进行微波处理后,选择性地提高了 PVC 表面的亲水性,从而在最佳浮选条件下,从 WEEE 塑料混合物中分离出 PVC(回收率和纯度均达到 100%)。进一步进行 100 秒的温和加热处理,由于形成了密度低于水的扭曲结构,以及未处理的 ABS,从而选择性地分离出含 BFR 的 PAC 涂覆的 ABS,达到了最高的回收率和纯度(100%)。仅对 PAC 涂覆的 WEEE 塑料混合物进行温和加热处理,即可成功回收(100%)ABS 和 PVC。然而,与使用联合热和微波处理获得的 PVC 相比,回收的 PVC 的纯度略有降低(96.8%)。这两种处理方法与浮选相结合,促进了 PVC 和 ABS 从 WEEE 塑料中的选择性和可持续分离,提高了它们的回收质量。