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首页> 外文期刊>Journal of Hazardous Materials >Pyrolysis and utilization of nonmetal materials in waste printed circuit boards: Debromination pyrolysis, temperature-controlled condensation, and synthesis of oil-based resin
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Pyrolysis and utilization of nonmetal materials in waste printed circuit boards: Debromination pyrolysis, temperature-controlled condensation, and synthesis of oil-based resin

机译:废印刷电路板中非金属材料的热解和利用:脱溴热解,温度控制的缩合和油基树脂的合成

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摘要

The rapid replacement of electric and electronic equipment has produced large amount of waste printed circuit boards (WPCBs). At present, physical and mechanical methods are widely used to recover valuable metals from WPCBs. Unfortunately, produced nonmetal materials (NMMs) were typically hazardous waste and were usually disposed by landfill. Considering the characteristics of structure and composition of NMMs, debromination pyrolysis was regarded as the appropriate technique to decompose organics. However, pyrolysis oil and pyrolysis residue were still typically hazardous and difficult to disposal or recycle. Hence, we proposed a novel integrated method to reuse NMMs. The results showed that temperature-controlled condensation method was effective to separate pyrolysis oil. Besides, bromine was removed from organics and formed CaBr2. Pyrolysis oil was used to synthesize oil-based resin. FT-IR, H-1 and C-13 NMR and TG analysis results indicated that oil-based resin had the same structure and thermostability with commercial resin, which suggested that oil-based rein had economic value. In addition, CaBr2 in residual could be recycled by water leaching and filter residues can be used as ideal reinforcing material for building materials. This study raises a comprehensive method to utilize NMMs and recover value materials effectively, sustainably and environmentally friendly.
机译:电气和电子设备的快速更换产生了大量的废印刷电路板(WPCB)。当前,物理和机械方法被广泛用于从WPCB中回收有价值的金属。不幸的是,生产的非金属材料(NMM)通常是危险废物,通常通过垃圾掩埋处置。考虑到NMMs的结构和组成的特点,脱溴热解被认为是分解有​​机物的合适技术。然而,热解油和热解残余物通常仍然是危险的并且难以处置或再循环。因此,我们提出了一种新颖的重用NMM的集成方法。结果表明,温控冷凝法是分离热解油的有效方法。此外,从有机物中去除了溴并形成了CaBr2。热解油用于合成油基树脂。 FT-IR,H-1和C-13 NMR和TG分析结果表明,油基树脂与商业树脂具有相同的结构和热稳定性,表明油基树脂具有经济价值。此外,残留的CaBr2可以通过水浸回收,并且过滤器残留物可以用作建筑材料的理想增强材料。这项研究提出了一种综合方法,可以利用NMMs有效,可持续和环保地回收有价值的材料。

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