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Abstract
Thermal decomposition of waste epoxy PCBs was performed in different atmospheres (nitrogen, argon, air and vacuum) at a heating rate of 10 °C/min by DSC-TGA, and the pyrolysis characteristic was analyzed. The gases volatilized from the experiment were qualitatively analyzed by TG-FTIR. Kinetics study shows that pyrolysis reaction takes place between 300 and 400 °C, and the activation energies are 256, 212 and 186.2 kJ/mol in nitrogen, argon and vacuum, respectively. There are two mass-loss processes in the decomposition under air atmosphere. In the first mass-loss process, the decomposition is the main reaction, and in the second process, the oxidation is the main reaction. The activation energy of the second mass-loss process is 99.6 kJ/mol by isothermal heat-treatments. TG-FTIR analysis shows carbon dioxide, carbon monoxide, hydrogen bromide, phenol and substituent phenol are given off during the pyrolysis of waste epoxy PCBs.
Keywords
pyrolysis
/
kinetics
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waste
/
printed circuit boards
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Zhi-hua Zhan, Ke-qiang Qiu.
Pyrolysis kinetics and TG-FTIR analysis of waste epoxy printed circuit boards.
Journal of Central South University, 2011, 18(2): 331-336 DOI:10.1007/s11771-011-0700-z
| [1] |
HuangK., GuoJ., XuZ.-ming.. Recycling of waste printed circuit boards: A review of current technologies and treatment status in China [J]. J Anal Appl Pyrol, 2009, 164(2/3): 399-408
|
| [2] |
LadouJ.. Printed circuit board industry [J]. Int J Hyg Environ Health, 2006, 209(3): 211-219
|
| [3] |
GuanJ., LiY. S., LuM. X.. Product characterization of waste printed circuit board by pyrolysis [J]. J Anal Appl Pyrol, 2008, 83(2): 185-189
|
| [4] |
MoltoJ., FontR., GalvezA., ConesaJ.. Pyrolysis and combustion of electronic wastes [J]. J Anal Appl Pyrol, 2009, 84(1): 68-78
|
| [5] |
HallW. J., WilliamsP. T.. Separation and recovery of materials from scrap printed circuit boards [J]. Resour Conserv Recy, 2007, 51(3): 691-709
|
| [6] |
BalabanovichA. L., LudaM. P., OpertiL.. GC/MS identification of pyrolysis products of fire-retardant brominated epoxy resin [J]. J Fire Sci, 2005, 23(3): 227-245
|
| [7] |
HallW. J., WilliamsP. T.. Pyrolysis of brominated feedstock plastic in a fluidized bed reactor [J]. J Anal Appl Pyrol, 2006, 77(1): 75-82
|
| [8] |
YoshikageO., IsaoH., KazuhiroM.. Pyrolysis of the mixture of biomass and plastics in countercurrent flow reactor: Part I. Experimental analysis and modeling of kinetics [J]. Fuel, 2008, 87(13/14): 3105-3111
|
| [9] |
ChiangH. L., LinK. H., LaiM. H., ChenT. C., MaS. Y.. Pyrolysis characteristics of integrated circuit boards at various particle sizes and temperatures [J]. J Hazard Mater, 2007, 149(1): 151-159
|
| [10] |
HallW., PaulT.. Removal of organobromine compounds from the pyrolysis oils of flame retarded plastics using zeolite catalysts [J]. J Anal Appl Pyrol, 2008, 81(2): 139-147
|
| [11] |
ZhouL., WangY., HuangQ., CaiJ.. Thermogravimetric characteristics and kinetic of plastic and biomass blends co-pyrolysis [J]. Fuel Process Technol, 2006, 87(11): 963-969
|
| [12] |
ChenK. S., ChenH. C., WuC. H., ChouY. M.. Kinetics of thermal and oxidative decomposition of printed circuit boards [J]. J Environ Eng, 1999, 125(3): 277-283
|
| [13] |
AltoeG. F., FreitasJ. C. C., CunhaA. G., ErnmerichF. G., SmithM. E.. Kinetics and C-13 NMR study of oxygen incorporation into PVC- and pitch-derived materials [J]. Energ Fuel, 2009, 23(3): 1373-1378
|
| [14] |
HaH., LeeT., LeeS., KimD., JooH.. Oxidative stabilization mechanism of poly(vinyl chloride) pitch [J]. Polym Degrad Stabil, 2000, 68(2): 247-252
|
| [15] |
LudaM. P., BalabanovichA. I., ZanettiM., GuarattoD.. Thermal decomposition of fire retardant brominated epoxy resins cured with different nitrogen containing hardeners [J]. Polym Degrad Stabil, 2007, 92(6): 1088-1100
|
| [16] |
BukharkinaT. V., DigurovN. G.. Kinetics of aerobic liquid-phase oxidation of organic compounds [J]. Org Process Res Dev, 2004, 8(3): 320-329
|
| [17] |
BhaskarT., KanekoJ., MutoA., SakataY., JakabE., MatsuiT., UddinM. A.. Pyrolysis studies of PP/PE/PS/PVC/HIPS-Br plastics mixed with PET and dehalogenation (Br, Cl) of the liquid products [J]. J Anal Appl Pyrol, 2004, 72(1): 27-33
|
| [18] |
DuanJ.-a., CaiG.-h., ShuaiC.-jun.. The relationship between IR characteristic peak and microstructure of the glass used as optical fiber [J]. J Cent South Univ Technol, 2006, 13(3): 238-241
|
| [19] |
ZhuH. M., JiangX. G., YanJ. H., ChiY., CenK. F.. TG-FTIR analysis of PVC thermal degradation and HCl removal [J]. J Anal Appl Pyrol, 2008, 82(1): 1-9
|
| [20] |
GrauseG., FurusawaM., OkuwakiA., YoshiokaT.. Pyrolysis of tetrabromobisphenol-A containing paper laminated printed circuit boards [J]. Chemosphere, 2008, 71(5): 872-878
|
| [21] |
ChienY. C., WangH. P., LinK. S., HuangY. J., YangY. W.. Fate of bromine in pyrolysis of printed circuit board wasters [J]. Chemosphere, 2000, 40(4): 383-387
|
| [22] |
DeM. I., CaballeroB. M., ChomonM. J., LaresgoitiM. F., TorresA., FernandezG., ArnaizS.. Pyrolysis of electrical and electronic wastes [J]. J Anal Appl Pyrol, 2008, 82(2): 179-183
|