Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/2004
Title: Combustion Characteristics and Decomposition Kinetics of Melon Seed Husks Based on the Distributed Activated Energy Model
Authors: AYOOSU, Lorakaa
Keywords: Combustion
Kinetic analysis
Melon seed husks
Activated energy
DAEM
Issue Date: 21-Sep-2020
Publisher: Petroleum and Coal
Citation: 12. Nyakuma, B. B., Oladokun, O., Ivase, T. J.-P., Ayoosu, M. I., Ali, J. B., Moveh, S., & Dodo, Y. A. (2020). Combustion Characteristics and Decomposition Kinetics of Melon Seed Husks Based on the Distributed Activated Energy Model. Petroleum and Coal 62(4), 1225-1230
Series/Report no.: VOL 63;NO 3
Abstract: This paper examined the thermal decomposition kinetics of melon seed husks (MSH) under multi-heating rates and non-isothermal oxidative conditions by thermogravimetric analysis (TGA), tem-perature profile characteristics (TPCs), and the distributed activated energy model (DAEM). The thermal analysis resulted in 95.06 – 95.77% mass loss (ML) and 4.01 – 4.94% residual mass (RM). The TPCs indicated that the midpoint (Tmid), endpoint (Tend), peak drying and peak devolatilization temperatures (I and II) increased with incremental heating rates except for the ignition (Tons). In addition, the changes in temperature and heating rates significantly influenced the thermal behaviour, degradation mechanisms, and TPCs as evident in TG/DTG plots. Kinetic analyses indicated the activation energy (Ea) and frequency factor (A) also fluctuated significantly during TGA. The values of Ea were from 46.53 kJ/mol to 533.82 kJ/mol, whereas A was from 3.62 min-1 to 1.68 × 1051 min-1 with average values of 215.56 kJ mol-1 and 8.85 × 1049 min-1, respectively. Overall, the MSH displayed high thermal reactivity during thermal and kinetic analyses. Hence, combustion is a potentially practical route for the valorisation of MSH into clean energy for a sustainable environment.
URI: http://localhost:8080/xmlui/handle/123456789/2004
ISSN: 1337-7027
Appears in Collections:Research Articles

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