Nowakowski Piotr
Silesian University of Technology, Faculty of Transport, ul. Krasińskiego 8, 40-019 Katowice, Poland.
Waste Manag. 2017 Feb;60:494-504. doi: 10.1016/j.wasman.2016.10.016. Epub 2016 Oct 18.
Waste electrical and electronic equipment (WEEE), also known as e-waste, is one of the most important waste streams with high recycling potential. Materials used in these products are valuable, but some of them are hazardous. The urban mining approach attempts to recycle as many materials as possible, so efficiency in collection is vital. There are two main methods used to collect WEEE: stationary and mobile, each with different variants. The responsibility of WEEE organizations and waste collection companies is to assure all resources required for these activities - bins, containers, collection vehicles and staff - are available, taking into account cost minimization. Therefore, it is necessary to correctly determine the capacity of containers and number of collection vehicles for an area where WEEE need to be collected. There are two main problems encountered in collection, storage and transportation of WEEE: container loading problems and vehicle routing problems. In this study, an adaptation of these two models for packing and collecting WEEE is proposed, along with a practical implementation plan designed to be useful for collection companies' guidelines for container loading and route optimization. The solutions are presented in the case studies of real-world conditions for WEEE collection companies in Poland.
废弃电子电气设备(WEEE),也被称为电子垃圾,是具有高回收潜力的最重要的废物流之一。这些产品中使用的材料很有价值,但其中一些是有害的。城市采矿方法试图回收尽可能多的材料,因此收集效率至关重要。有两种主要的WEEE收集方法:固定式和移动式,每种都有不同的变体。WEEE组织和废物收集公司的责任是确保这些活动所需的所有资源——垃圾桶、容器、收集车辆和工作人员——都可用,同时考虑成本最小化。因此,有必要正确确定需要收集WEEE的区域的容器容量和收集车辆数量。在WEEE的收集、储存和运输中遇到两个主要问题:容器装载问题和车辆路径问题。在本研究中,提出了这两种模型对WEEE包装和收集的适应性,以及一个实际实施计划,旨在对收集公司的容器装载和路线优化指南有用。这些解决方案在波兰WEEE收集公司的实际情况案例研究中呈现。