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Pyrolysis Kinetics and Emission Characteristics of Waste Disposable Paper Cups Using the Thermogravimetric-FTIR Technique
- Source :
- Progress in Reaction Kinetics and Mechanism. 42:126-135
- Publication Year :
- 2017
- Publisher :
- SAGE Publications, 2017.
-
Abstract
- The pyrolysis of waste disposable paper cups (WDPCs) was investigated using a thermogravimetric analyser coupled with a Fourier transform infrared spectrometer. The activation energies of the pyrolysis reactions were obtained by the Flynn–Wall–Ozawa (FWO) and Kissinger–Akahira–Sunose (KAS) methods respectively. The kinetic model was determined by the master plots method. Thermogravimetric results showed that the highest weight loss rate occurred from 345 to 365 °C as the heating rate was increased from 10 to 30 °C min−1, indicating the pyrolysis of cellulosic material in the WDPC. The weight loss between 400 and 500 °C can be attributed to the decomposition of polyethylene. By analysing the FTIR spectra, it was found that the absorbance of all the evolved gaseous products had peaks at 360 °C due to the decomposition of cellulose fibres and the cracking of polyethylene at 485 °C led to the emergence of a second hydrocarbon peak. Ketones were the most abundant condensable organic products and CO2 was the dominating gaseous product, which can also be produced via secondary cracking of the small molecule organics above 400 °C. Kinetic analysis revealed that the average activation energy of the pyrolysis of the WDPC was 153.75 kJ mol−1 from the FWO method and 151.43 kJ mol−1 from the KAS method. The reaction mechanism can be described by the R3 model.
- Subjects :
- Thermogravimetric analysis
Chemistry
020209 energy
Kinetics
Analyser
Analytical chemistry
Infrared spectroscopy
02 engineering and technology
Activation energy
symbols.namesake
Fourier transform
0202 electrical engineering, electronic engineering, information engineering
symbols
Physical and Theoretical Chemistry
Fourier transform infrared spectroscopy
Pyrolysis
Subjects
Details
- ISSN :
- 1471406X and 14686783
- Volume :
- 42
- Database :
- OpenAIRE
- Journal :
- Progress in Reaction Kinetics and Mechanism
- Accession number :
- edsair.doi...........17e156cb2efd466d9f1fe3979a40a35d
- Full Text :
- https://doi.org/10.3184/146867817x14806858832063