Chen Fu, Yang Baodan, Zhang Wangyuan, Ma Jing, Lv Jie, Yang Yongjun
Low Carbon Energy Institute, China University of Mining and Technology, Xuzhou 221008, PR China; School of Environment Science and Spatial Informatics, China University of Mining and Technology, Xuzhou 221043, PR China.
School of Environment Science and Spatial Informatics, China University of Mining and Technology, Xuzhou 221043, PR China.
Waste Manag. 2017 Feb;60:660-665. doi: 10.1016/j.wasman.2016.09.027. Epub 2016 Sep 24.
Electric bicycles (e-bicycles) are a primary means of commuting in China because of their light weight, speed, and low maintenance costs. Owing to short service life and environmental pollution hazards, recycling and reuse of e-bicycle batteries has always been a focus of industry and academia. As a typical case of both production and use of large electric bicycles, 113 major sellers, 378 corporate and individual buyers, 147 large e-bicycle repair centers, and 1317 e-bicycle owners in Xuzhou City were investigated in order to understand the sales, use, recycling, and disposal of spent e-bicycle batteries. The findings show that the existing distempered recycling system is the main limitation of spent battery recovery, and the actual recovery rate of spent batteries is lower than the estimated output (QW) for the years 2011-2014. Electric bicycle sellers play a fundamental role in the collection of spent batteries in Xuzhou, accounting for 42.3±8.3% of all batteries recovered. The widespread use of lithium batteries in recent years has resulted in a reduction in spent battery recycling because of lower battery prices. Furthermore, consumer preferences are another important factor affecting the actual recovery rate according to survey results evaluated using canonical correspondence analysis. In this paper, we suggest that a reverse logistics network system for spent battery recycling should be established in the future; in addition, enhancing producer responsibility, increasing publicity, raising of public awareness, developing green public transport, and reducing dependence on e-bicycles also should be pursued. This study seeks to provide guidance for planning construction and management policies for an effective spent battery recycling system in China and other developing countries.
电动自行车因其重量轻、速度快和维护成本低,成为中国主要的通勤工具。由于电动自行车电池使用寿命短且存在环境污染风险,其回收再利用一直是业界和学术界关注的焦点。作为大型电动自行车生产和使用的典型案例,对徐州市113家主要销售商、378家企业及个人购买者、147家大型电动自行车维修中心和1317名电动自行车车主进行了调查,以了解废旧电动自行车电池的销售、使用、回收及处置情况。调查结果显示,现行不完善的回收体系是废旧电池回收的主要限制因素,2011 - 2014年废旧电池的实际回收率低于预估产量(QW)。电动自行车销售商在徐州市废旧电池回收中发挥着基础性作用,回收的电池占全部回收电池的42.3±8.3%。近年来锂电池的广泛使用,因电池价格降低导致废旧电池回收量减少。此外,根据典范对应分析评估的调查结果,消费者偏好是影响实际回收率的另一个重要因素。本文建议未来应建立废旧电池回收的逆向物流网络系统;此外,还应强化生产者责任、加大宣传力度、提高公众意识、发展绿色公共交通并减少对电动自行车的依赖。本研究旨在为中国及其他发展中国家有效废旧电池回收系统的规划建设和管理政策提供指导。