A review on Transforming plastic wastes into fuel
Keywords:
Plastic wastes, Pyrolysis, Liquid fuel, Energy recovery, RecyclingAbstract
The application of plastics in various sectors led to its increased production globally and this demand, in turn, caused an overflow of plastic waste in landfills, illegal dumping in the sea, and environmental pollution. To overcome this issue, several alternatives for managing plastic wastes have been developed and among them, reuse, recycling, and energy recovery methods are highly acknowledged methods. Nonetheless, recycling methods come with certain disadvantages like mixing and segregation of wastes, high labour costs associated with segregation and processing, by-product disposal, and its usage. Researchers have shifted their focus to energy recovery systems because of these drawbacks. Extensive research in this area led to the development of converting waste plastics into liquid fuel through the process called pyrolysis. The pyrolysis process can thermally degrade plastics in the absence of oxygenproducing oil and monomers. The temperature has the most impact on the pyrolysis process and depending on the types of plastic wastes, the pyrolysis temperature varies between 300 – 800 oC. The oil yield due to the variation in temperature varies between 45 – 95 wt.% and the calorific value of the oil has been observed to be in the range of 9679 – 11428.5 kCal/kg, which is similar to the other commercial fuels. Also, the review indicates that it is possible to extract up to 84% of fuel from 1-kg plastic at 360 oC. As a result, following refining/blending with conventional fuels, pyrolysis oil can be utilised as an alternate source of energy and transportation fuel. Apart from the temperature, the other influencing factors include, the reactor design and its size, pressure, heating rate, residence time and feedstock composition. The pyrolysis process was examined in terms of plastic types and primary process factors that impacted the end result, such as oil, gaseous, and char. Temperatures, reactor types, residence duration, pressure, catalysts, and other critical factors were examined in this work. Furthermore, the study examines technological problems and current advances.
Published
How to Cite
Issue
Section
Copyright (c) 2022 Journal of the Nigerian Society of Physical Sciences

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- J. A. Akinpelu, K. P. Ojo, S. O. Salawu, G. O. Olutona, F. O. Aweda, O. O. Jegede, Concentrations of heavy metal content in indoor dust and potential exposure in preschool children , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
- T. Daniel, A. A. McAsule, Measurement of the Excited Energies Identified in 42Ca using the ROSPHERE Gamma-ray Arrays , Journal of the Nigerian Society of Physical Sciences: Volume 2, Issue 3, August 2020
- C. O. Lawani, G. J. Ibeh, O. O. Ige, Eli Danladi, J. O. Emmanuel, A. J. Ukwenya, P. O. Oyedare, Corrigendum to "Numerical Simulation of Copper Indium Gallium Diselenide Solar Cells Using One Dimensional SCAPS Software [J. Nig. Soc. Phys. Sci. 3 (2021) 48–58, https://doi.org/10.46481/jnsps.2021.133]" , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 3, August 2021
- I. T. Bello, Y. A. Odedunmoye, O. Adedokun, H. A. Shittu, A. O. Awodugba, Numerical Simulation of Sandwiched Perovskite-Based Solar Cell Using Solar Cell Capacitance Simulator (SCAPS-1D) , Journal of the Nigerian Society of Physical Sciences: Volume 1, Issue 2, May 2019
- L. O. Afolagboye, Z. O. Arije, A. O. Talabi, O. O. Owoyemi, Effect of Pre-Test Drying Temperature on the Properties of Lateritic Soils. , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 1, February 2023
- Abdullahi Moyosore, Haslina Ahmad, Muhammad Alif Muhammad Latif, Mostafa Yousefzadeh Borzehandani, Mohd Basyaruddin AbdulRahman, Emilia Abdelmalek, Carbon (IV) oxide adsorption efficiency of functionalized HKUST-1, IRMF-1, and UiO-66 metal organic frameworks , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 1, February 2024
- Vanita R. Raikar, Lakshminarayanachari K, K. Bharathi, C. Bhaskar , Mathematical advection-diffusion model of primary and secondary pollutants emitted from the point source with mesoscale wind and removal mechanisms , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 2, May 2025
- S. A. Abdullahi, A. G. Habib, N. Hussaini, Mathematical Model of In-host Dynamics of Snakebite Envenoming , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 2, May 2022
- K. T. Shivaram, A. M. Yogitha, S. M. Rajesh, N. Mahesh Kumar, Numerical computation of cut off wave number in polygonal wave guide by eight node finite element mesh generation approach , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 4, November 2024
- Sunday D. Olorunfunmi, Armand Bahini, Samuel A. Adeojo, Velocity-in/dependent double folding analysis of 12C + 12C elastic scattering cross section at different energies , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
You may also start an advanced similarity search for this article.

