147
Views
2
CrossRef citations to date
0
Altmetric
Articles

TGA analysis of tobacco rob pyrolysis and release characteristics of noncondensable gas in a fixed-bed reactor

, , , &
Pages 378-385 | Received 25 Jan 2018, Accepted 17 Jan 2019, Published online: 05 Feb 2019

References

  • Chouchene, A., M. Jeguirim, B. Khiari, F. Zagrouba, and G. Trouvé. 2010. Thermal degradation of olive solid waste: Influence of particle size and oxygen concentration. Resources, Conservation and Recycling 54:271–77. doi:10.1016/j.resconrec.2009.04.010.
  • Cui, L. J., W. G. Lin, and J. Z. Yao. 2006. Influences of temperature and coal particle size on the flash pyrolysis of coal in a fast-entrained bed. Chemical Research in Chinese Universities 22:103–10. doi:10.1016/S1005-9040(06)60056-1.
  • Dai, X. W., C. Z. Wu, H. B. Li, and Y. Chen. 2000. The fast pyrolysis of biomass in CFB reactor. Energy & Fuels 14:552–57. doi:10.1021/ef9901645.
  • Demirbas, A. 2004. Effects of temperature and particle size on bio-char yield from pyrolysis of agricultural residues. Journal of Analytical and Applied Pyrolysis 72:243–48. doi:10.1016/j.jaap.2004.07.003.
  • Demirbas, M. F. 2006. Hydrogen from various biomass species via pyrolysis and steam gasification processes. Energy Sources A 28:245–52. doi:10.1080/009083190890003.
  • Di, B. C., and M. Lanzetta. 1997. Intrinsic kinetics of isothermal xylan degradation in inert atmosphere. Journal of Analytical and Applied Pyrolysis 40–41:287–303.
  • Di Blasi, C. 1996. Kinetic and heat transfer control in the slow and flash pyrolysis of solids. Industrial & Engineering Chemistry Research 35:37–46. doi:10.1021/ie950243d.
  • Efika, C. E., C. F. Wu, and P. T. Williams. 2012. Syngas production from pyrolysis–Catalytic steam reforming of waste biomass in a continuous screw kiln reactor. Journal of Analytical and Applied Pyrolysis 95:87–94. doi:10.1016/j.jaap.2012.01.010.
  • Encinar, J. M., F. J. Beltran, A. Bernalte, A. Ramiro, and J. F. Gonzalez. 2016. Pyrolysis of two agricultural residues: Olive and grape bagasse. Influence of Particle Size and Temperature. Biomass Bioenergy 11:397–409. doi:10.1016/S0961-9534(96)00029-3.
  • Ferdous, D., A. K. Dalai, S. K. Bej, and R. W. Thring. 2002. Pyrolysis of lignins: Experimental and kinetic studies. Energy & Fuels : an American Chemical Society Journal 16:1405–12. doi:10.1021/ef0200323.
  • Fisher, T., M. Hajaligol, B. Waymack, and D. Kellogg. 2003. Pyrolysis behavior and kinetics of biomass derived materials. Journal of Analytical and Applied Pyrolysis 62:331–49. doi:10.1016/S0165-2370(01)00129-2.
  • Glarborg, P., A. Jensen, and J. E. Johnsson. 2003. Fuel nitrogen conversion in solid fuel fired systems. Progress in Energy and Combustion Science 29 (2):89–113. doi:10.1016/S0360-1285(02)00031-X.
  • Guo, J., and A. C. Lua. 2001. Kinetic study on pyrolytic process of oil-palm solid waste using two-step consecutive reaction model. Biomass & Bioenergy 20:223–33. doi:10.1016/S0961-9534(00)00080-5.
  • Jamil, K., J. I. Hayashi, and C. Z. Li. 2004. Pyrolysis of a Victorian brown coal and gasification of nascent char in CO2 atmosphere in a wire-mesh reactor. Fuel 83 (7):833–43. doi:10.1016/j.fuel.2003.09.017.
  • Jauhiainen, J., J. A. Conesa, R. Font, and I. Martín-Gullón. 2004. Kinetics of the pyrolysis and combustion of olive oil solid waste. Journal of Analytical and Applied Pyrolysis 72:9–15. doi:10.1016/j.jaap.2004.01.003.
  • Jeguirim, M., and G. Trouve. 2009. Pyrolysis characteristics and kinetics of Arundo donax using thermogravimetric analysis. Bioresource Technology 100:4026–31. doi:10.1016/j.biortech.2009.03.033.
  • Jose, M. J., S. Alvarez, and R. Lopez. 2018. Catalytic combustion of vineyard pruning waste in a conical spouted bed Combustor. Catalysis Today. doi:10.1016/j.cattod.2017.11.020.
  • Kim, S. S., J. Kim, Y. H. Park, and Y. K. Park. 2010. Pyrolysis kinetics and decomposition characteristics of pine trees. Bioresource Technology 101:9797–802. doi:10.1016/j.biortech.2010.07.094.
  • Li, X. T., J. R. Grace, C. J. Lim, A. P. Watkinson, H. P. Chen, and J. R. Kim. 2004. Biomass gasification in a circulating fluidized bed. Biomass & Bioenergy 26:171–93. doi:10.1016/S0961-9534(03)00084-9.
  • Luo, G.Q., D.S. Chandler, L.C.A. Anjos, R.J. Eng, P. Jia, and F.L.P. Resende. 2017. Pyrolysis of whole wood chips and rods in a novel ablative reactor. Fuel194:229–38. doi: 10.1016/j.fuel.2017.01.010.
  • Lv, P. M., Z. H. Xiong, J. Chang, C. Z. Wu, Y. Chen, and J. X. Zhu. 2004. An experimental study on biomass air-steam gasification in a fluidized bed. Bioresource Technology 95 (1):95–101. doi:10.1016/j.biortech.2004.02.003.
  • Mahinpey, N., P. Murugan, T. Mani, and R. Raina. 2009. Analysis of bio-oil, bio-gas and bio-char from pressurized pyrolysis of wheat straw using a tubular reactor. Energy Fuel 23:2736–42. doi:10.1021/ef8010959.
  • Nasir, A., and T. W. Paul. 1998. Influence of particle grain size on the yield and composition of products from the pyrolysis of oil shales. Journal of Analytical and Applied Pyrolysis 46:31–49. doi:10.1016/S0165-2370(98)00069-2.
  • Nath, K., and D. Das. 2003. Hydrogen from biomass. Current Science 85:265–71.
  • Orfao, J. J. M., F. J. A. Antunes, and J. L. Figueiredo. 1999. Pyrolysis kinetics of lignocellulosic materials – Three independent reactions model. Fuel 78:349–58. doi:10.1016/S0016-2361(98)00156-2.
  • Park, Y. H., J. Kim, S. S. Kim, and Y. K. Park. 2009. Pyrolysis characteristics and kinetics of oak trees using thermogravimetric analyzer and micro-tubing reactor. Bioresource Technology 100:400–05. doi:10.1016/j.biortech.2008.06.040.
  • Rapagna, S., and A. Latif. 1997. Steam gasification of almond shells in a fluidized bed reactor: The influence of temperature and particle size on product yield and distribution. Biomass & Bioenergy 12:281–88. doi:10.1016/S0961-9534(96)00079-7.
  • Scott, D. S., and J. Piskorz. 1984. The continuous flash pyrolysis of biomass. The Canadian Journal of Chemical Engineering 62:404–12. doi:10.1002/cjce.v62:3.
  • Sensöz, S., D. Angın, and S. Yorgun. 2000. Influence of particle size on the pyrolysis of rapeseed (Brassica napus L.): Fuel properties of bio-oil. Biomass & Bioenergy 19:271–89. doi:10.1016/S0961-9534(00)00041-6.
  • Shen, J., X. S. Wang, M. Garcia-Perez, D. Mourant, M. J. Rhodes, and C. Z. Li. 2009. Effect of particle size on the fast pyrolysis of oil mallee woody biomass. Fuel 88:1810–17. doi:10.1016/j.fuel.2009.05.001.
  • Sonobe, T., and N. Worasuwannarak. 2008. Kinetic analyses of biomass pyrolysis using the distributed activation energy model. Fuel 87:414–21. doi:10.1016/j.fuel.2007.05.004.
  • Starink, M. J. 2003. The determination of activation energy from linear heating rate experiments: A comparison of the accuracy of isoconversion methods. Thermochimica Acta 404:163–76. doi:10.1016/S0040-6031(03)00144-8.
  • Thangalazhy-Gopakumar, S., S. Adhikari, R. B. Gupta, and M. B. Tu. 2011. Production of hydrocarbon fuels from biomass using catalytic pyrolysis under helium and hydrogen environments. Bioresource Technology 102:6742–49. doi:10.1016/j.biortech.2011.03.104.
  • Veronika, S., P. Josef, and S. Gernot. 1997. Effects of particle size, heating rate and pressure on measurement of pyrolysis kinetics by thermogravimetric analysis. Fuel 76:1277–82. doi:10.1016/S0016-2361(97)00106-3.
  • Wang, D., S. Czernik, D. Montané, M. Mann, and E. Chornet. 1997. Biomass to hydrogen via fast pyrolysis and catalytic steam reforming of the pyrolysis oil or its fractions. Industrial & Engineering Chemistry Research 36:1507–18. doi:10.1021/ie960396g.
  • Wang, G., W. Li, B. Li, and H. Chen. 2008. TG study on pyrolysis of biomass and its three components under syngas. Fuel 87:552–58. doi:10.1016/j.fuel.2007.02.032.
  • Wu, D., G. Liu, S. Chen, and R. Sun. 2015. An experimental investigation on heating rate effect in the thermal behavior of perhydrous bituminous coal during pyrolysis. Journal of Thermal Analysis and Calorimetry 119 (3):2195–203. doi:10.1007/s10973-015-4401-y.
  • Yang, Y., T. Li, S. P. Jin, Y. X. Lin, and H. P. Yang. 2011. Catalytic pyrolysis of tobacco rob: Kinetic study and fuel gas produced. Bioresource Technology 102:11027–33. doi:10.1016/j.biortech.2011.09.053.
  • Zaror, C. A., I. S. Hutchings, D. L. Pyle, H. N. Stiles, and R. Kandiyoti. 1985. Secondary char formation in the catalytic pyrolysis of biomass. Fuel 64:990–94. doi:10.1016/0016-2361(85)90156-5.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.