Methodological Study and Application on Technology Policies of PCs Recycling in China

Xiaohua Zhou, X. Wen, Jinhui Li, Hao Liu
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引用次数: 1

Abstract

China faces great challenge on e-waste problems. Lacking of controllable collection system and compatible management measures, advanced recycling technologies and effective technology policies has resulted in out-of-order flow of e-waste and serious environmental pollution during disassembly and recycling. How to constitute scientifically decision-making technical policies of e-waste treatment and disposal becomes a significant topic in terms of constructing a resource saving and environmentally sound society in China. In this paper, waste PCs were selected as the tracer and possible collection routes and recycling methods of waste PCs were designed. A new method of material flow analysis in combination with economic stream analysis of PCs was created and a Monte-Carlo mathematical model of cost minimization in the constraints of environmental sound handling of waste PCs was established. By following the streams of different treatment processes consisting of various technologies from collection, transport, treatment, recycling and disposal of waste PCs, the economic distribution in terms of possibility functions was identified. Every technical step was evaluated economically. The optimal treatment/ disposal technology proposed was the ones with high possibilities in the model calibration results. Results showed that operation life span plays the key role. The model supports the process of maintenance for the short lasting PCs. For the long lasting PCs, following recycling and disposal technologies combinations are recommended: mechanical recycling for waste plastics, electronic wire heater method to separate panel glass and cone glass, panel glass recycling as panel glass raw material, cone glass recycling as cone glass raw material". Results also showed that for waste printed circuit boards, content of noble metals is the key factor for selection of mechanical treatment technology. When Au content is below 1 g/t, "wet shredding + water table separation " is an optimal flowsheet; when Au content is above 1 g/t, "dry shedding +electrostatic separation +centrifugal separation " is the best choice.
中国pc回收技术政策的方法论研究与应用
中国在电子垃圾问题上面临着巨大的挑战。由于缺乏可控的收集系统和配套的管理措施,缺乏先进的回收技术和有效的技术政策,导致电子垃圾在拆解和回收过程中流动无序,环境污染严重。如何制定科学的电子垃圾处理处置决策技术政策,成为中国建设资源节约型和环境友好型社会的重要课题。本文选取了废旧pc作为示踪剂,设计了废旧pc可能的收集路线和回收方法。提出了一种结合pc经济流分析的物料流分析新方法,并建立了基于环境无害化处理约束下成本最小化的蒙特卡罗数学模型。通过跟踪由收集、运输、处理、回收和处置废弃pc的各种技术组成的不同处理过程的流程,确定了可能性函数方面的经济分布。对每一个技术步骤都进行了经济评价。提出的最优处理/处置工艺是模型标定结果中可能性较大的工艺。结果表明,使用寿命起着关键作用。该模型支持短寿命pc机的维护过程。对于使用寿命较长的pc,建议采用以下回收和处置技术组合:废塑料的机械回收,面板玻璃和锥状玻璃的电子线加热器分离法,面板玻璃回收作为面板玻璃原料,锥状玻璃回收作为锥状玻璃原料。结果还表明,对于废旧印刷电路板,贵金属含量是机械处理工艺选择的关键因素。当Au含量低于1 g/t时,以“湿法粉碎+地下分离”为最佳工艺流程;当Au含量在1 g/t以上时,以“干脱落+静电分离+离心分离”为最佳选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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