Effect of copper content on the pyrolysis process of organic components in waste printed circuit boards: Based on experimental and quantum chemical DFT simulations
|Updated:2026-01-06
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Effect of copper content on the pyrolysis process of organic components in waste printed circuit boards: Based on experimental and quantum chemical DFT simulations
Chinese Journal of Chemical EngineeringVol. 73, Issue 9, Pages: 202-211(2024)
Affiliations:
1. Institute of Circular Economy, Beijing University of Technology,Beijing,China,100124
2. Faculty of Materials and Manufacturing, Beijing University of Technology,Beijing,China,100124
3. Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences,Guangzhou,China,510640
Bin Li, Biqin Shen, Ran Tao, Chenwei Hu, Yufeng Wu, Haoran Yuan, Jing Gu, Yong Chen. Effect of copper content on the pyrolysis process of organic components in waste printed circuit boards: Based on experimental and quantum chemical DFT simulations[J]. Chinese Journal of Chemical Engineering, 2024, 73(9): 202-211.
DOI:
Bin Li, Biqin Shen, Ran Tao, Chenwei Hu, Yufeng Wu, Haoran Yuan, Jing Gu, Yong Chen. Effect of copper content on the pyrolysis process of organic components in waste printed circuit boards: Based on experimental and quantum chemical DFT simulations[J]. Chinese Journal of Chemical Engineering, 2024, 73(9): 202-211.DOI: 10.1016/j.cjche.2024.04.024.
Effect of copper content on the pyrolysis process of organic components in waste printed circuit boards: Based on experimental and quantum chemical DFT simulations
scientists have become increasingly concerned in recycling electronic trash
particularly waste printed circuit boards (WPCBs). Previous research has indicated that the presence of Cu impacts the pyrolysis of WPCBs. However
there may be errors in the experimental results
as printed circuit boards (PCBs) with copper and those without copper are produced differently. For this experiment
we blended copper powder with PCB nonmetallic resin powder in various ratios to create the samples. The apparent kinetics and pyrolysis properties of four resin powders with varying copper concentrations were compared using nonisothermal thermogravimetric analysis (TG) and thermal pyrolysis-gas chromatography mass spectrometry (Py-GC/MS). From the perspective of kinetics
the apparent activation energy of the resin powder in the pyrolysis reaction shows a rise (0.1<α<0.2)-stable (0.2<α<0.4)-accelerated increase (0.4<α<0.8)- decrease (0.8<α<0.9) process. After adding copper powder
the apparent activation energy changes more obviously when (0.2<α<0.4). In the early stage of the pyrolysis reaction (0.1<α<0.6)
the apparent activation energy is reduced
but when α = 0.8
it is much higher than that of the resin sample without copper. Additionally
it is discovered using thermogravimetric analysis and Py-GC/MS that copper shortens the temperature range of the primary pyrolysis reaction and prevents the creation of compounds containing bromine. This inhibition will raise the temperature at which compounds containing bromine first form
and it will keep rising as the copper level rises. The majority of the circuit board molecules have lower bond energies when copper is present
according to calculations performed using the Gaussian09 software
which promotes the pyrolysis reaction.
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