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Thermal degradation of olive solid waste: Influence of particle size and oxygen concentration

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  • Chouchene, Ajmia
  • Jeguirim, Mejdi
  • Khiari, Basma
  • Zagrouba, Fathi
  • Trouvé, Gwénaëlle

Abstract

The aim of this work is to study the effect of the particle size and the oxygen content on the thermal degradation of olive solid waste (OSW). Thermogravimetric analyses of different particles sizes (0.5–2.8mm in diameter) were performed. Three different atmospheres were used: on the one hand, an inert atmosphere (N2) in order to study the pyrolysis of the olive solid waste and on the other hand two oxidative atmosphere (10% O2/N2; 20% O2/N2). Pyrolysis under oxidative conditions (10% O2/N2; 20% O2/N2) takes place according to three stages: drying, volatiles emission and char oxidation whereas in the case of pyrolysis under inert conditions only the two first stages occur. Loss of humidity and volatiles are independent of the oxygen concentration. However, the initial temperature of char oxidation is decreasing with the increase of oxygen concentration. Weight loss profiles as well as CO and CO2 emission rates during the oxidative pyrolysis are depending on the particle size of OSW. In fact, thermal degradation and emission rates of carbon oxides emissions proceed at lower temperatures for the smallest particle size. The temperature ranges of volatilization and char oxidation as well as the amount of remaining ash are also depending on the particle size.

Suggested Citation

  • Chouchene, Ajmia & Jeguirim, Mejdi & Khiari, Basma & Zagrouba, Fathi & Trouvé, Gwénaëlle, 2010. "Thermal degradation of olive solid waste: Influence of particle size and oxygen concentration," Resources, Conservation & Recycling, Elsevier, vol. 54(5), pages 271-277.
  • Handle: RePEc:eee:recore:v:54:y:2010:i:5:p:271-277
    DOI: 10.1016/j.resconrec.2009.04.010
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    References listed on IDEAS

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    1. Prasad, S. & Singh, Anoop & Joshi, H.C., 2007. "Ethanol as an alternative fuel from agricultural, industrial and urban residues," Resources, Conservation & Recycling, Elsevier, vol. 50(1), pages 1-39.
    2. Gani, Asri & Naruse, Ichiro, 2007. "Effect of cellulose and lignin content on pyrolysis and combustion characteristics for several types of biomass," Renewable Energy, Elsevier, vol. 32(4), pages 649-661.
    3. Kazagic, A. & Smajevic, I., 2009. "Synergy effects of co-firing wooden biomass with Bosnian coal," Energy, Elsevier, vol. 34(5), pages 699-707.
    4. Abu-Qudais, M., 1996. "Fluidized-bed combustion for energy production from olive cake," Energy, Elsevier, vol. 21(3), pages 173-178.
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    1. Jeguirim, Mejdi & Chouchène, Ajmia & Réguillon, Alain Favre & Trouvé, Gwenaelle & Le Buzit, Gérard, 2012. "A new valorisation strategy of olive mill wastewater: Impregnation on sawdust and combustion," Resources, Conservation & Recycling, Elsevier, vol. 59(C), pages 4-8.
    2. Raza, Mohsin & Abu-Jdayil, Basim & Al-Marzouqi, Ali H. & Inayat, Abrar, 2022. "Kinetic and thermodynamic analyses of date palm surface fibers pyrolysis using Coats-Redfern method," Renewable Energy, Elsevier, vol. 183(C), pages 67-77.

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