Have a personal or library account? Click to login
Calculation of Kinetic Parameters of the Thermal Decomposition of Residual Waste of Coniferous Species: Cedrus Deodara Cover

Calculation of Kinetic Parameters of the Thermal Decomposition of Residual Waste of Coniferous Species: Cedrus Deodara

Open Access
|Jun 2018

References

  1. AKAHIRA, T. - SUNOSE, T. 1971. Joint convention of four electrical institutes. In Science Technology, vol.16, pp. 22-31.
  2. CRIADO, J. M. - ORTEGA, A. 1984. Remarks on the discrimination of the kinetics of solid-state reactions from a single non-isothermal trace. In Journal of Thermal Analysis, vol. 29, pp. 1075-1082.10.1007/BF02188860
  3. DHAUNDIYAL, A. - SINGH, S. B. 2017. Parametric study of nth order distributed activation energy model for isothermal pyrolysis of forest waste using Gaussian distribution. In Acta Technologica Agriculturae, vol. 20, no. 1, pp. 23-28.10.1515/ata-2017-0005
  4. DHAUNDIYAL, A. - TEWARI, P. C. 2016. Performance evaluation of throatless gasifier using pine needles as a feedstock for power generation. In Acta Technologica Agriculturae, vol. 19, no. 1, pp. 10-18.10.1515/ata-2016-0003
  5. DOYLE, C. D. 1962. Estimating isothermal life from thermogravimetric data. In Journal of Applied Polymer Science, vol. 6, pp. 639-642.10.1002/app.1962.070062406
  6. FLYNN, J. H. 1991. A general differential technique for the determination of parameters for d(α)/dt = f(α)A exp (-E/RT). In Journal of Thermal Analysis, vol. 37, no. 2, pp. 293-305.10.1007/BF02055932
  7. FLYNN, J. - WALL, L. 1966a. A quick, direct method for the determination of activation energy from thermogravimetric data. In Journal of Polymer Science Part B: Polymer Letters, vol. 4, no. 5, pp. 323-328.10.1002/pol.1966.110040504
  8. FLYNN, J. H. - WALL, L. A. 1966b. General treatment of the thermogravimetry of polymers. In Journal of Research of the National Bureau of Standards Part A, vol. 70, pp. 487-523.10.6028/jres.070A.043
  9. FRIEDMAN, H. L. 1964. Kinetics of thermal degradation of charforming plastics from thermogravimetry. Application to phenolic plastic. In Journal of Polymer Science C, vol. 6, pp. 183-195.10.1002/polc.5070060121
  10. GOVERNMENT OF INDIA. 2013. Environmental Information System (ENVIS) Centre, Uttarakhand, Classification of Forests. http://utrenvis.nic.in/data/classification%20forest.pdf
  11. KHAWAM, A. 2007. Application of solid state-kinetics to desolvation reactions. USA : Iowa University, doctoral thesis.
  12. KISSINGER, H. 1956. Variation of peak temperature with heating rate in differential thermal analysis. In Journal of Research of the National Bureau of Standards, vol. 57, no. 4, pp. 217-221.10.6028/jres.057.026
  13. KUMAR, A. - WANG, L. - DZENIS, Y. - JONES, D. - HANNA, M. 2008. Thermogravimetric characterization of corn stover as gasification and pyrolysis feedstock. In Biomass and Bioenergy, vol. 32, no. 5, pp. 460-467.10.1016/j.biombioe.2007.11.004
  14. OZAWA, T. 1965. A new method of analyzing thermogravimetric data. In Bulletin of the Chemical Society of Japan, vol. 38, no. 11, pp. 1881-1886.10.1246/bcsj.38.1881
  15. PILOYAN, G. O. - RYABCHIKOV, I. D. - NOVIKOVA, O. S. 1966. Determination of activation energies of chemical reactions by differential thermal analysis. In Nature, vol. 212, pp. 1229.10.1038/2121229a0
  16. QUAN, C. - LI, A. - GAO, N. 2009. Thermogravimetric analysis and kinetic study on large particles of printed circuit board wastes. In Waste Management, vol. 29, no. 8, pp. 2353-2360.10.1016/j.wasman.2009.03.020
  17. SBIRRAZZUOLI, N. - VINCENT, L. - MIJA, A. - GUIO, N. 2009. Integral, differential and advanced isoconversional methods: Complex mechanisms and isothermal predicted conversion-time curves. In Chemometrics and Intelligent Laboratory Systems, vol. 96, no. 2, pp. 219-226.10.1016/j.chemolab.2009.02.002
  18. SENNECA, O. - CHIRONE, R. - MASI, S. - SALATINO, P. 2002. A thermogravimetric study of nonfossil solid fuels 1. Inert pyrolysis. In Energy and Fuels, vol. 16, no. 3, pp. 653-660.10.1021/ef0102059
  19. SHAKYA, B. 2007. Pyrolysis of waste plastics to generate useful fuel containing hydrogen using a solar thermochemical process. Australia : Sydney University, Master of Engineering.
  20. SIMON, P. 2004. Isoconversional methods: fundamental, meaning and application. In Journal of Thermal Analysis and Calorimetry, vol. 76, no. 1, pp. 123-132.10.1023/B:JTAN.0000027811.80036.6c
  21. STREZOV, V. - MOGHTADERI, B. - LUCAS, J. 2003. Thermal study of decomposition of selected biomass samples. In Journal of Thermal Analysis and Calorimetry, vol. 72, no. 3, pp. 1041-1048.10.1023/A:1025003306775
  22. TENG, H. - HSIEH, C. T. 1999. Influence of surface characteristics on liquid-phase adsorption of phenol by activated carbons prepared from bituminous coal. In Industrial & Engineering Chemistry Research, vol. 37, no. 9, pp. 3618-3624.10.1021/ie970796j
  23. VYAZOVKIN, S. - WIGHT, C. A. 1999. Model-free and model-fitting approaches to kinetic analysis of isothermal and nonisothermal data. In Thermochimica Acta, vol. 340-341, pp. 53-68.10.1016/S0040-6031(99)00253-1
  24. YAO, F. - WU, Q. - LEI, Y. - GUO, W. - XU, Y. 2008. Thermal decomposition kinetics of natural fibers: Activation energy with dynamic thermogravimetric analysis. In Polymer Degradation and Stability, vol. 93, no. 1, pp. 90-98.10.1016/j.polymdegradstab.2007.10.012
Language: English
Page range: 75 - 80
Published on: Jun 29, 2018
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Alok Dhaundiyal, Muammel M. Hanon, published by Slovak University of Agriculture in Nitra
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.