Development and Characterization of Particle Boards Based on Sorghum Husk
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Abstract
This study tackles current environmental challenges by developing innovative
and eco-friendly particle boards utilizing sorghum husk, combined with recycled
expanded polystyrene (EPS). This dual eco-responsible approach valorizes
sorghum husk, often deemed agricultural waste, and repurposes EPS, a
plastic waste, thus contributing to CO2 emission reduction and effective waste
management. The manufacturing process involves dissolving recycled polystyrene
within a solvent to create a binder, which is then mixed with sorghum
husk and cold-pressed into composite boards. The study explores the impact
of two particle sizes (fine and coarse) and two different concentrations of the
recycled EPS binder. Results demonstrate significant variations in the boards’
mechanical properties, displaying a range of Modulus of Rupture (MOR) from
0.84 MPa to 3.85 MPa, and Modulus of Elasticity (MOE) spanning from
658.13 MPa to 1313.25 MPa, influenced by the binder concentration and particle
size. These characteristics suggest that the boards can be effectively used
in various construction applications, including interior decoration, false ceilings,
and potentially for furniture and door manufacturing when combined
with appropriate coatings. This study not only exemplifies the valorization of
plastic and agricultural wastes but also offers a practical, localized solution to
global climate change challenges by promoting sustainable construction materials
