Enhancing Banana Fibre Properties for Waste Stabilization and Possible Industrial Applications through Chemical Modification
Keywords:
Banana fibres; Chemical modification; Mercerization; Bleaching; Natural fibre composites.Abstract
Natural fibres have emerged as sustainable alternatives to synthetic fibres
because of their biodegradability, renewability, low density, and reduced
environmental impact. Among these, banana fibres (Musa sapientum), obtained from
agricultural waste, offer significant potential as reinforcement materials in
composite applications. This study investigated the chemical extraction and
structural modification of banana fibres to enhance their sorption and mechanical
properties through sequential retting, scouring, bleaching, and mercerization
treatments. The effects of bleaching time, temperature, and hydrogen peroxide
concentration on fibre performance were systematically evaluated to establish
optimum processing conditions. Moisture imbibition increased considerably
following chemical treatment, indicating improved fibre surface activity and
hydrophilicity. The highest moisture absorption capacity of 58.5% was obtained at
a bleaching temperature of 100°C after 40 min of treatment. Fibres bleached with
5% and 10% hydrogen peroxide (H₂O₂) exhibited high equilibrium moisture
absorption, while mercerized fibres processed under the same conditions recorded
substantially higher equilibrium moisture contents of 80% and 90%, respectively.
Mechanical evaluation further revealed that fibres bleached with 2% H₂O₂ and
subsequently mercerized with 22% sodium hydroxide (NaOH) exhibited superior
load–elongation characteristics compared with fibres treated using higher
hydrogen peroxide concentrations (10% and 15% H₂O₂), indicating that excessive
oxidant concentrations may adversely affect fibre integrity. Based on the
experimental results, an effective bleaching condition of 2–5% H₂O₂ at 100°C for
40 min was established for achieving an optimal balance between sorption and
mechanical performance. Overall, the study demonstrates that controlled chemical
modification is an effective strategy for enhancing the functional properties of
banana fibres, thereby promoting their utilization as sustainable reinforcement
materials in polymer composites and other environmentally friendly engineering and
industrial applications.
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