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Metals, non-metals and PCB in electrical and electronic waste - Actual levels in Switzerland

机译:电气和电子废料中的金属,非金属和PCB-瑞士的实际水平

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摘要

The chemical composition of waste of small electrical and electronic equipment (s-WEEE), a rapidly growing waste stream, was determined for selected metals (Cu, Sb, Hg etc.) and non-metals (Cl, Br, P) and PCBs. During a 3-day experiment, all output products and the s-WEEE input mass flows in a WEEE recycling plant were measured. Only output products were sampled and analyzed. Material balances were established, applying substance flow analysis (SFA). Transfer coefficients for the selected substances were also determined.rnThe results demonstrate the capability of SFA to determine the composition of the highly heterogeneous WEEE for most substances with rather low uncertainty (2σ ≤ ± 30%). The results confirm the growing importance of s-WEEE regarding secondary resource metals and potential toxic substances. Nowadays, the thirty times smaller s-WEEE turns over larger flows for many substances, compared to municipal solid waste. Transfer coefficient results serve to evaluate the separation efficiency of the recycling process and confirm - with the exception of PCB and Hg - the limitation of hand-sorting and mechanical processing to separate pollutants (Cd, Pb, etc.) out of reusable fractions. Regularly applied SFA would serve to assess the efficacy of legislative, organizational and technical measures on the WEEE.
机译:确定了选定的金属(Cu,Sb,Hg等)以及非金属(Cl,Br,P)和PCBs的小型电气和电子设备(s-WEEE)废物的化学成分(迅速增长的废物流) 。在为期3天的实验中,测量了WEEE回收工厂中的所有输出产品和s-WEEE输入质量流量。仅对输出产品进行采样和分析。应用物质流分析(SFA)建立物料平衡。还确定了所选物质的转移系数。结果表明,SFA能够确定大多数不确定性极低(2σ≤±30%)的物质的高度异构WEEE的组成。结果证实了s-WEEE在二次资源金属和潜在有毒物质方面的重要性日益提高。如今,与城市固体废物相比,小得多的s-WEEE可以处理许多物质的较大流量。传递系数的结果可用于评估回收过程的分离效率,并确定(除多氯联苯和汞外)手工分选和机械加工的局限性,无法从可重复使用的组分中分离出污染物(镉,铅等)。定期应用的SFA将有助于评估WEEE的立法,组织和技术措施的有效性。

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