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首页> 外文期刊>Chemical engineering journal >Co-treatment of waste printed circuit boards and polyvinyl chloride by subcritical water oxidation: Removal of brominated flame retardants and recovery of Cu and Pb
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Co-treatment of waste printed circuit boards and polyvinyl chloride by subcritical water oxidation: Removal of brominated flame retardants and recovery of Cu and Pb

机译:亚临界水氧化法共同处理废印刷电路板和聚氯乙烯:去除溴化阻燃剂并回收铜和铅

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摘要

In this work, an effective process for removal of brominated flame retardants (BFRs) and recovery of Cu and Pb from waste printed circuit boards (PCBs) was developed. In the process, waste PCBs and polyvinyl chloride (PVC) were co-treated by subcritical water oxidation (SBWO). PVC was used as a hydrochloric acid source and waste PCBs was used as a neutralizing reagent for the produced HC1. The dechlorination of PVC, removal of BFRs, and recovery of Cu and Pb could be achieved simultaneously by the one-step SBWO reaction. Experimental results showed that the dechlorination of PVC was complete when SBWO temperature exceeded 250 °C. SBWO co-treatment was high efficient for the leaching of Cu and Pb from waste PCBs, and XRD spectra indicated that Sn was immobilized as SnO2 in the residue after co-treatment. The optimum SBWO co-treatment conditions were temperature of 350 °C, time of 60 min, solid-liquid ratio of l:9g/ml, and PVC-to-PCBs ratio of 1:1, respectively. In the optimized co-treatment, 98.9% of Cu and 80% of Pb were recovered, while the leaching efficiencies of Sn and Cr were 15.3% and 3.9%, respectively. Meanwhile, approximately 100% of the bromine was changed into HBr and enriched in water after co-treatment. ",
机译:在这项工作中,开发了一种有效的方法,用于去除溴化阻燃剂(BFR)以及从废印刷电路板(PCB)中回收铜和铅。在此过程中,通过亚临界水氧化(SBWO)对废PCB和聚氯乙烯(PVC)进行了共处理。 PVC被用作盐酸源,而废PCB被用作所产生HCl的中和剂。通过一步SBWO反应可同时实现PVC的脱氯,BFR的去除以及Cu和Pb的回收。实验结果表明,当SBWO温度超过250℃时,PVC的脱氯完成。 SBWO协同处理对于从废PCB中浸出Cu和Pb的效率很高,并且XRD光谱表明,协同处理后,Sn以SnO2的形式固定化了Sn。最佳的SBWO共处理条件是温度为350°C,时间为60分钟,固液比为1:9g / ml,PVC与PCBs的比例为1:1。在优化的协同处理中,回收了98.9%的Cu和80%的Pb,而Sn和Cr的浸出效率分别为15.3%和3.9%。同时,在共处理后,大约100%的溴变成了HBr,并富含水。 ”,

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