Arends Dagmar, Schlummer Martin, Mäurer Andreas, Markowski Jens, Wagenknecht Udo
Department of Recycling Polymers, Fraunhofer Institute IVV, Freising, Germany.
Department of Recycling Polymers, Fraunhofer Institute IVV, Freising, Germany
Waste Manag Res. 2015 Sep;33(9):775-84. doi: 10.1177/0734242X15588585. Epub 2015 Jun 25.
Waste electrical and electronic equipment is a complex waste stream and treatment options that work for one waste category or product may not be appropriate for others. A comprehensive case study has been performed for plastic-rich fractions that are treated in German dismantling centres. Plastics from TVs, monitors and printers and small household appliances have been characterised extensively. Based on the characterisation results, state-of-the-art treatment technologies have been combined to design an optimised recycling and upgrade process for each input fraction. High-impact polystyrene from TV casings that complies with the European directive on the restriction of hazardous substances (RoHS) was produced by applying continuous density separation with yields of about 60%. Valuable acrylonitrile butadiene styrene/polycarbonate can be extracted from monitor and printer casings by near-infrared-based sorting. Polyolefins and/or a halogen-free fraction of mixed styrenics can be sorted out by density separation from monitors and printers and small household appliances. Emerging separation technologies are discussed to improve recycling results.
废弃电子电气设备是一种复杂的废物流,适用于一种废物类别或产品的处理方法可能不适用于其他类别或产品。针对德国拆解中心处理的富含塑料的部分进行了一项全面的案例研究。对来自电视、显示器、打印机和小型家用电器的塑料进行了广泛的特性分析。根据特性分析结果,结合了最先进的处理技术,为每个输入部分设计了优化的回收和升级工艺。通过应用连续密度分离法,从电视外壳中生产出符合欧洲有害物质限制指令(RoHS)的高抗冲聚苯乙烯,产率约为60%。通过基于近红外的分选,可以从显示器和打印机外壳中提取有价值的丙烯腈丁二烯苯乙烯/聚碳酸酯。聚烯烃和/或混合苯乙烯类的无卤部分可以通过密度分离从显示器、打印机和小型家用电器中分离出来。讨论了新兴的分离技术以改善回收效果。