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首页> 外文期刊>Journal of Cleaner Production >Impact of the operating conditions on the derived products and the reaction mechanism in vacuum pyrolysis treatment of the organic material in waste integrated circuits
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Impact of the operating conditions on the derived products and the reaction mechanism in vacuum pyrolysis treatment of the organic material in waste integrated circuits

机译:在真空热解废集成电路中有机材料时,操作条件对衍生产物的影响及反应机理

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摘要

Recycling waste integrated circuits is significant for resource recovery and environmental protection. Integrated circuits are rich in metals including silver, copper and so on. However, it is difficult to recover metals from integrated circuits because they are tightly covered with packaging materials, which are mainly composed of organic material. The content of organic material in integrated circuits reaches up to 14.08 wt%, which should be removed beforehand for more effective recovery of metals and avoiding environmental pollution. But scant research has been done to study the reasonable treatment. In this study, vacuum pyrolysis was applied to degrade the organic material of waste integrated circuits. The organic conversion rate could reach 80.05% with the temperature of 615 degrees C, the pressure of 20 Pa and the holding time of 24 min. The effects of temperature and pressure on pyrolysis products were analyzed. Besides, the reaction mechanism in the process of vacuum pyrolysis was studied. The pyrolysis residue was crushed and screened after pyrolysis and it was concluded that metal concentrate and nonmetals accounted for 43.17% and 56.83%, respectively. And the rate of copper recovery reached 98.21%. This study provides an efficient process for the treatment of organic material in waste integrated circuits. (C) 2018 Elsevier Ltd. All rights reserved.
机译:回收废集成电路对于资源回收和环境保护具有重要意义。集成电路富含银,铜等金属。但是,由于金属被以有机材料为主成分的包装材料紧密覆盖,因此难以从集成电路中回收金属。集成电路中有机材料的含量高达14.08 wt%,应事先去除以更有效地回收金属并避免环境污染。但是,很少研究来研究合理的治疗方法。在这项研究中,采用真空热解法降解废集成电路的有机材料。在615℃的温度,20Pa的压力和24分钟的保持时间下,有机转化率可达到80.05%。分析了温度和压力对热解产物的影响。此外,还研究了真空热解过程中的反应机理。热解后的热解残渣经粉碎和筛分后得出结论,金属精矿和非金属分别占43.17%和56.83%。铜回收率达到98.21%。这项研究提供了一种有效的方法来处理废物集成电路中的有机材料。 (C)2018 Elsevier Ltd.保留所有权利。

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