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首页> 外文期刊>Journal of Cleaner Production >Recycling of bare waste printed circuit boards as received using an organic solvent technique at a low temperature
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Recycling of bare waste printed circuit boards as received using an organic solvent technique at a low temperature

机译:使用有机溶剂技术在低温下回收的废旧印刷电路板

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High recycling rate is considered the main challenge to close the loop of circular economy for the million tons of Waste Printed Circuit Boards (WPCBs) due to their complex structure. In order to achieve this goal, the current work aims to recover all metal foils and woven fiberglass layers from bare Waste Printed Circuit Board (WPCBs) "as received" through dissolution of Brominated Epoxy Resin (BER) by solvent Dimethylformamide (DMF) at low temperature (50 degrees C) with recycling rate 99%. To avoid the losses of materials in form of dust and fly ash that occur during shredding and milling of WPCBs, the experiment was carried out on a full-size waste video card. A traditional ultrasonic bath was used as a reactor after several modifications; the modifications included glass vessel (reaction chamber) containing DMF and video card, fixation system to install the reaction chamber inside the bath constrained by flexible flotation in the vibrating fluid under the effect of sound waves in order to reduce the dissolution time. In addition, cover and suction system were installed to prevent any leakage of harmful fumes. Metal foils and woven fiberglass layers were separated after 16 h, then a rotary decompression evaporator was used to extract BER and regenerate used DMF. Also, economic assessment of the developed technique was performed in terms of power consumption, Ultraviolet visible spectroscopy, Fourier transform infrared spectroscopy, Nuclear magnetic resonance spectroscopy, metallographic microscope, SEM and EDX were used to examine the structure of recovered BER and composition of fiberglass and metal. The results showed that the new technique is efficient enough to be applied on an industrial scale, especially in the countries having a warm climate. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于其复杂的结构,高回收率被认为是关闭百万吨废印刷电路板(WPCB)循环经济循环的主要挑战。为了实现这一目标,当前的工作旨在通过溶剂二甲基甲酰胺(DMF)溶解溴化环氧树脂(BER),从裸露的废印刷电路板(WPCB)“按原样”回收所有金属箔和玻璃纤维编织层。温度(50摄氏度),回收率> 99%。为了避免在WPCB的切碎和铣削过程中出现粉尘和飞灰形式的材料损失,该实验在全尺寸的废显卡上进行。经过多次修改后,使用传统的超声波浴作为反应器。修改包括装有DMF和视频卡的玻璃容器(反应室),将反应室安装在槽内的固定系统,该槽在声波的作用下在振动流体中受到柔性浮选的约束,从而减少了溶解时间。此外,还安装了盖子和吸气系统,以防止有害烟气泄漏。 16小时后分离金属箔和玻璃纤维编织层,然后使用旋转减压蒸发器提取BER,并再生用过的DMF。此外,还从功耗,紫外线可见光谱,傅里叶变换红外光谱,核磁共振光谱,金相显微镜,SEM和EDX方面对所开发技术进行了经济评估,以检查回收的BER的结构和玻璃纤维的组成。金属。结果表明,该新技术足够有效地应用于工业规模,特别是在气候温暖的国家。 (C)2018 Elsevier Ltd.保留所有权利。

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