Distributed activation energy modelling for pyrolysis of forest waste using Gaussian distribution
By: Alok Dhaundiyal and Suraj B. Singh
References
- Antal, M. J., Plett, E. G., Chung, T. P. (2006). Recent progress in kinetic models for coal pyrolysis. Available at: http://web.anl.gov/PCS/acsfuel/preprint%20archive/Files/22_2_NEW%20ORLEANS_03-77_0137.pdf (accessed 10 April 2016).
- Anthony, D. B., Howard, J. B. (1976). Coal devolatilization and hydro- gasification. American Institute of Chemical Engineers (AIChE) J., 22, 625-656.
- Armstrong, R., Kulesza, B. L. J. (1981). An approximate solution to the equation x = exp(?x/?). Bull. Inst. Math. Appl., 17, 56.
- Brown, M. E. (1988). Introduction to Thermal Analysis Techniques and Applications. New York: Chapman and Hall. 224 pp.
- Burnham, A. K., Schmidt, B. J., Braun, R. L (1995). A test of parallel reaction model using kinetic measurements on hydrous pyrolysis residues. Organ. Geochem., 23 (10), 931-939.
- Burnham, A. K., Braun, R. L. (1999). Global kinetic analysis of complex materials. Energy Fuels, 13 (1), 1-22.
- Capart, R., Khezami, L., Burnham, A. K. (2004). Assessment of various kinetic models for the pyrolysis of microgranular cellulose. Thermochim. Acta, 417 (1), 79-89.
- Conesa, J. A, Marcilla, A., Caballero, J. A., Font, R. (2001). Comments on the validity and utility of the different methods for kinetic analysis of thermogravimetric data. J. Anal. Appl. Pyrolysis, 58-59, 617-633.
- Conesa, J. A., Caballero, J. A., Marcilla, A., Font, R. (1995). Analysis of different kinetic model in the dynamic pyrolysis of cellulose. Thermochim. Acta, 254, 175-192.
- Criado, J. M., Jiménez, P. E. S., Pérez-Maqueda, L. A. (2005). Sample controlled thermal analysis and kinetics. J. Therm. Anal. Cal., 80 (1), 27-33.
- Dhaundiyal, A., Tewari, P. C. (2015). Comparative analysis of pine needles and coal for electricity generation using carbon taxation and emission reductions. Acta Technol. Agricult., 18 (2), 29-35.
- Dhaundiyal, A., Gupta, V. K. (2014). The analysis of pine needles as a substrate for gasification. J. Water, Energy Environ., 15, 73-81
- Ferdous, D., Dalai, A. K., Bej, S. K., Thring, R. W. (2002). Pyrolysis of lignins: experimental and kinetics studies. Energy Fuels, 16 (6), 1405-1412
- Folgueras, M. B., Díaz, R. M., Xiberta, J., Prieto, I. (2003). Thermogravimetric analysis of the co-combustion of coal and sewage sludge. Fuel, 82 (15-17), 1051-1055.
- Galgano, A., Blasi, C. D. (2003). Modeling wood degradation by the unreacted-core-shrinking approximation. Ind. Eng. Chem. Res., 42 (10), 2101-2111.
- Ghosh, M. K., Ghosh, U. K. (2011). Utilization of pine needles as bed material in solid state fermentation for production of lactic acid by lactobacillus strains. Bio Res., 6 (2), 1556-1575
DOI: https://doi.org/10.1515/prolas-2016-0011 | Journal eISSN: 2255-890X (formerly 1407-009X) | Journal ISSN: 1407-009X
Language: English
Page range: 64 - 70
Submitted on: Sep 28, 2015
Published on: Jun 15, 2016
Published by: Latvian Academy of Sciences
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2016 Alok Dhaundiyal, Suraj B. Singh, published by Latvian Academy of Sciences
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.