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Migration characteristics of heavy metals during simulated use of secondary products made from recycled e-waste plastic

机译:仿真使用回收的电子废料塑料制成的二次产物中重金属的迁移特性

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摘要

Recycling of plastics from e-waste can conserve resources, however, aging during the use of plastic products can cause the migration of heavy metals in additives. This study presents a methodology for evaluating the risks of heavy metals in waste plastic secondary products during long term use associated with heavy metal migration. The study processes were investigated by: (1) recycling waste plastics and producing secondary products; (2) thermal aging of secondary products; and (3) toxic leaching used to quantitatively analyse the dissolution of heavy metals. Combined with the changes in mechanical properties and microstructure, the effect of aging on the migration of heavy metals was observed. The results showed that the polymer appeared to delaminate, the adhesion of waste plastics to additives decreased, and the mechanical properties clearly decreased after the thermal aging experiment. Leaching experiments showed that the leached concentrations of Ni, Cu, Zn, Pb, and Sb in the three types waste plastic products increased over time. After 8 d of aging, the leached concentrations of Ni, Sb, and Pb exceeded the third, fourth, and third class of the groundwater quality standard, respectively. Specifically, the concentrations of Sb were 141, 289, and 21.1 times higher than the maximum permissible level. Therefore, management hierarchy and safe environmental recycling methods should be developed to reduce the risk of heavy metals in waste plastic secondary products.
机译:然而,从电子废物中回收塑料可以保护资源,然而,在使用塑料制品期间的老化会导致添加剂中重金属的迁移。本研究提出了一种在与重金属迁移相关的长期使用期间评估废塑料二级产品中重金属风险的方法。研究进程:(1)回收废塑料和生产二级产品; (2)二级产品的热老化; (3)用于定量分析重金属溶解的毒性浸出。结合机械性能和微观结构的变化,观察到老化对重金属迁移的影响。结果表明,聚合物出现分层,废塑料对添加剂的粘附性降低,热老化实验后机械性能明显降低。浸出实验表明,三种垃圾塑料制品中的Ni,Cu,Zn,Pb和Sb的浸出浓度随着时间的推移而增加。在8 d衰老后,分别浸出的Ni,Sb和Pb的浸出浓度超过了地下水质量标准的第三类,第四类和第三类。具体地,Sb的浓度为141,289和比最大允许水平高出21.1倍。因此,应制定管理等级和安全的环境回收方法,以降低废塑料二级产品中重金属的风险。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第jul15期|110577.1-110577.7|共7页
  • 作者单位

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    School of Environmental Science and Engineering Tongji University Shanghai 200092 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

    WEEE Research Centre of Shanghai Polytechnic University Shanghai 201209 China Research Center of Resource Recycling Science and Engineering Shanghai Polytechnic University Shanghai 201209 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plastic products; Aging; Dissolution; Migration; Leaching experiment; Environmental risk;

    机译:塑料制品;老化;解散;移民;浸出实验;环境风险;

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