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February 6, 20260 citationsOpen Access

Utilization of maize cobs for the production of eco-friendly composite boards

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DOD. A. OkeThe Polytechnic IbadanGOG. F. OladiranThe Polytechnic IbadanSRS.B RaheemThe Polytechnic Ibadan

Key Points

  • The research aims to evaluate the use of maize cob particles as a sustainable reinforcement in eco-friendly composite boards.
  • Studied maize cob particles bonded with termite mound soil and cement.
  • Assessed physical and mechanical properties including density, compressive strength, and water absorption.
  • Conducted tests to determine optimal maize cob inclusion levels for structural performance.
  • Optimal performance observed at 2.5–5.0% maize cob inclusion for mechanical stability.
  • Higher maize cob content resulted in reduced density and mechanical strength.
  • Dimensional instability increased with excessive maize cob loading, compromising board performance.

Abstract

The rising demand for wood-based particleboards in Nigeria’s construction sector has intensified deforestation, environmental degradation, and timber scarcity. Additionally, conventional particleboards use synthetic adhesives like urea-formaldehyde and phenol-formaldehyde, which emit carcinogenic formaldehyde, posing health and environmental risks.This research investigated the effects of maize cob particles bonded with termite mound soil and cement on the physical and mechanical properties of composite boards. The study assessed parameters including density, compressive strength, flexural strength, modulus of elasticity, modulus of rupture, water absorption, and thickness swelling. Results revealed that increasing maize cob content generally reduced density and mechanical strength, while dimensional instability increased. Optimal performance was achieved at 2.5–5.0% maize cob inclusion, where composites exhibited improved strength and stability suitable for structural applications. Beyond this threshold, excessive cob loading introduced voids, weakened particle–matrix adhesion, and compromised stiffness and rupture resistance. The findings demonstrate that maize cob particles can serve as sustainable reinforcement material in eco-friendly composites, particularly in regions with abundant agricultural residues. By optimising cob proportions, composite boards can balance environmental benefits with mechanical reliability. This study highlights the potential of agricultural waste utilisation in advancing sustainable construction materials and promoting circular economy practices.

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Cite This Study

Oke et al. (2026) studied this question.

synapsesocial.com/papers/698586238f7c464f2300a053https://doi.org/10.5281/zenodo.18477570
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