A STUDY ON THE KINETICS AND THERMAL DECOMPOSITION BEHAVIOR DURING THE NON-CATALYTIC CO-PYROLYSIS OF PINEAPPLE CROWN WASTE (PCW) AND POLYETHYLENE (PE)

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Abstract

Unlike plastic, biomass can be converted into high-quality alternative fuel. This study investigated the co-pyrolysis of pineapple crown wastes (PCW) and poly-ethylene plastic (PE). The synergy between these two feedstocks was evaluated using thermogravimetric (TGA) and derivative thermogravimetry (DTG) analyses. The Coats-Redfern method was employed to determine the activation energy during synergy analysis. The results indicated that the activation energy ranged from 17 to 200 KJ/mol, depending on the composition of the co-pyrolysis mixture. The thermal degradation occurred in two stages: PCW degraded at temperatures between 170 and 400°C, while PE degraded at temperatures between 400 and 550°C. The co-pyrolysis of PCW and PE shows potential as an alternative fuel source and offers a solution to community waste problems.

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Olalo, J. A., & Vega, F. A. (2025). A STUDY ON THE KINETICS AND THERMAL DECOMPOSITION BEHAVIOR DURING THE NON-CATALYTIC CO-PYROLYSIS OF PINEAPPLE CROWN WASTE (PCW) AND POLYETHYLENE (PE). ARPN Journal of Engineering and Applied Sciences, 20(15), 1278–1284. https://doi.org/10.59018/0825145

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