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Factors influencing the release of potentially toxic elements (PTEs) during thermal processing of electronic waste

机译:影响电子废物热处理过程中释放潜在有毒元素(PTES)的因素

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摘要

The release of potentially toxic elements as airborne fine particulates is a significant environmental risk associated with recycling e-waste. Some of these may redeposit near emission sites or be transported over long distances causing wide-spread pollution. With an aim to identify key factors affecting particulate emissions, we report novel investigations on the adsorptive capture of particulate matter (PM) released during low temperature pyrolysis (600 °C; 15 min) of waste printed circuit boards (PCBs). A significant proportion of the released particulates (5.3 to 37%) were captured by adsorbents located downstream and in close proximity to the emitting source. Data was collected for four different PCBs and three adsorbents: alumina, silica-gel and activated carbon. With sizes ranging from nanoparticles to over 10 μm, adsorbed particulates were present as fines, spheres, oblongs, clusters and larger particles with no specific shape. Of the 24 elements identified initially in waste PCBs, only 14 were detected in released particulates: major PTEs- Zn, Sn, Pb and Cu (up to 400 ppm); minor PTEs- Ni, Mn, Cd, Cr and Ba (up to 10 ppm); trace PTEs- Co, In, Bi, Be and Sb (up to 1 ppm). Key factors influencing the release of PTEs during thermal processing were identified as basic elemental characteristics, densities, melting points, vapor pressures, initial concentrations, local bonding and mechanical strength. These results show that the presence of low melting point/high vapour pressure elements (Zn, Pb, Sn) should be minimised for a significant reduction in PTE emissions during e-waste processing.
机译:潜在有毒元素作为机载细颗粒的释放是与回收电子废物相关的重大环境风险。其中一些可以在排放地点附近重新安装,或者在长距离上运输,导致宽阔的污染。旨在识别影响微粒排放的关键因素,我们向低温热解(600℃; 15分钟)废印刷电路板(PCB)释放的颗粒物质(PM)的吸附捕获进行了新的研究。通过位于下游的吸附剂捕获释放的颗粒(5.3至37%)的大量比例的释放颗粒和靠近发射源。为四种不同的PCB和三种吸附剂收集数据:氧化铝,二氧化硅凝胶和活性炭。尺寸范围从纳米颗粒到超过10μm,吸附的颗粒作为细粒,球形,椭圆形,簇和较大的颗粒,没有特定的形状。在最初在废弃物PCB中鉴定的24个元素中,在释放的颗粒中仅检测到14:主要PTES-Zn,Sn,Pb和Cu(高达400ppm);次要PTES-Ni,Mn,Cd,Cr和Ba(高达10ppm);追踪PTES-CO,IN,BI,BE和SB(最多1ppm)。影响热处理过程中PTE释放的关键因素被鉴定为基本元素特征,密度,熔点,蒸气压,初始浓度,局部粘合和机械强度。这些结果表明,在电子废物处理过程中,应最小化低熔点/高蒸气压元件(Zn,Pb,Sn)的存在,以显着降低PTE排放。

著录项

  • 来源
    《Waste Management》 |2020年第3期|414-424|共11页
  • 作者单位

    School of Materials Science and Engineering (Ret.) The University of New South Wales. Kensington Sydney NSW 2052 Australia;

    Department of Mechanical Engineering ABES Engineering College Ghaziabad 201009 India;

    Industrial Design Australian School of Architecture and Design The University of New South Wales Kensington Sydney NSW 2052 Australia;

    Institute of Minerals and Materials Technology Council of Scientific and Industrial Research Sachivalaya Marg Acharya Vihar Bhubaneswar Orissa 751013 India;

    Institute of Minerals and Materials Technology Council of Scientific and Industrial Research Sachivalaya Marg Acharya Vihar Bhubaneswar Orissa 751013 India;

    Institute of Minerals and Materials Technology Council of Scientific and Industrial Research Sachivalaya Marg Acharya Vihar Bhubaneswar Orissa 751013 India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Potentially toxic elements; PCBs; Particulates; Pollution; E-waste; Thermal processing;

    机译:潜在的有毒元素;PCB;颗粒物;污染;垃圾;热处理;

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