Self-catalytic pyrolysis thermodynamics of waste printed circuit boards with co-existing metals
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Environmental Science
Link
https://link.springer.com/content/pdf/10.1007/s11783-022-1581-0.pdf
Reference29 articles.
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3. Altarawneh M, Ahmed O H, Jiang Z T, Dlugogorski B Z (2016). Thermal recycling of brominated flame retardants with Fe2O3. Journal of Physical Chemistry A, 120(30): 6039–6047
4. Chen W, Chen Y, Shu Y, He Y, Wei J (2021). Characterization of solid, liquid and gaseous products from waste printed circuit board pyrolysis. Journal of Cleaner Production, 313: 127881
5. Chen X, Liu Y, Zhuo J, Jiao C, Qian Y (2015). Influence of organic-modified iron—montmorillonite on smoke-suppression properties and combustion behavior of intumescent flame-retardant epoxy composites. High Performance Polymers, 27(2): 233–246
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1. A novel subcritical water synergistic co-treatment of brominated epoxy resin and copper-based spent catalysts: debromination, phenol production, and copper recovery;Waste Management;2024-04
2. Kinetics and debromination studies on the pyrolysis of waste printed circuit boards with the addition of copper and copper oxides;Journal of Cleaner Production;2024-03
3. Thermochemical conversion of waste printed circuit boards: Thermal behavior, reaction kinetics, pollutant evolution and corresponding controlling strategies;Progress in Energy and Combustion Science;2023-07
4. Debromination with Bromine Recovery from Pyrolysis of Waste Printed Circuit Boards Offers Economic and Environmental Benefits;Environmental Science & Technology;2023-02-16
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