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A novel treatment of waste printed circuit boards by low-temperature near-critical aqueous ammonia: Debromination and preparation of nitrogen-containing fine chemicals

机译:低温近临界氨水处理废印刷电路板的新方法:脱溴和制备含氮精细化学品

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摘要

In waste printed circuit boards (PCBs), brominated epoxy resin (BER) and copper are the two types of material that attracts the most attention due to their environmental risk and resource value. In this study, a novel and high-efficiency process for debromination and resource recovery of waste PCBs by low-temperature near-critical aqueous ammonia (NCAA) was successfully developed. A batch reactor was used in experiments with the temperatures ranging from 200 to 350 degrees C and the reaction times from 30 to 90 min. The ammonia water in near critical conditions can act not only as a medium but also as a reactant. Approximately 100% of the Br in waste PCBs could be removed and trapped by the NCAA at 300 degrees C. Copper foil could be easily separated and recovered from waste PCBs after the NCAA process. No brominated organic compounds could be detected in the oil phase products after the NCAA treatment of waste PCBs even at low temperature of 200 degrees C. Two new products (pyrazine and pyridine compounds) with high value-added were obtained for the first time by the treatment of waste PCBs. This study provides a novel and efficient strategy for the debromination, the recovery of copper, and the preparation of high value-added nitrogen-containing fine chemicals from waste PCBs. The low-temperature NCAA processing of waste PCBs could effectively reduce the energy consumption in comparison with traditional thermal decomposition processes, and promote the sustainable waste management strategy for waste electrical and electronic equipment (WEEE). Copyright (C) 2018 Elsevier Ltd. All rights reserved.
机译:在废印刷电路板(PCB)中,由于其环境风险和资源价值,溴化环氧树脂(BER)和铜是最受关注的两种材料。在这项研究中,成功​​开发了一种新型的高效方法,用于通过低温近临界氨水(NCAA)进行废PCB的脱溴和资源回收。在实验中使用间歇式反应器,温度范围为200至350摄氏度,反应时间为30至90分钟。接近临界条件的氨水不仅可以充当介质,还可以充当反应物。废PCB中约100%的Br可以在300摄氏度下被NCAA去除并捕获。在NCAA处理之后,铜箔很容易从废PCB中分离并回收。经过NCAA处理后的废PCB,即使在200摄氏度的低温下,在油相产品中也未检测到溴化有机化合物。通过气相色谱法首次获得了两种高附加值的新产品(吡嗪和吡啶化合物)。废PCB的处理。这项研究提供了一种新的有效策略,用于从废PCB中脱溴,回收铜以及制备高附加值的含氮精细化学品。与传统的热分解工艺相比,废PCB的低温NCAA处理可以有效降低能耗,并促进废电气电子设备(WEEE)的可持续废物管理策略。版权所有(C)2018 Elsevier Ltd.保留所有权利。

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