Strength Properties of Concrete Using Canarium Kernel Shell and Polypropylene Fiber
DOI:
https://doi.org/10.70882/480vrz94Keywords:
Canarium kernel shell, polypropylene fiber, sustainable concrete, superplasticizer, low permeability, resource depletion and landscape degradationAbstract
This study investigated the strength performance of concrete incorporating
Canarium kernel shell (CKS) as a partial replacement for conventional coarse
aggregate and polypropylene fibre (PPF) as reinforcement, addressing concerns
associated with unsustainable natural aggregate consumption, cement-related CO₂
emissions, and agro-waste disposal. A factorial experimental design was adopted,
with CKS replacing coarse aggregate at 0%, 5%, 10%, and 15% by weight, while PPF
was incorporated at 0%, 0.5%, 1.0%, and 1.5% by volume. A total of 54 concrete
specimens were produced and evaluated. The CKS was appropriately processed and
pre-soaked before mixing, while a superplasticizer was used to optimize workability.
The specific gravity of CKS ranged from 2.36 to 2.42 kg/m³. Increasing CKS content
increased slump while maintaining medium workability and reduced concrete density
by 24%, satisfying lightweight concrete criteria. The mixture containing 5% CKS
exhibited the best mechanical performance, attaining compressive, tensile, and
flexural strengths of 29 MPa, 3.5 MPa, and 5.85 MPa, respectively. At 15% CKS
replacement, corresponding strengths were 24 MPa, 2.6 MPa, and 4.65 MPa,
respectively, exceeding applicable Nigerian minimum strength requirements. PPF
incorporation enhanced concrete toughness and crack-control capacity. Overall,
CKS–PPF concrete was technically viable at CKS replacement levels up to 15%,
providing a beneficial pathway for agro-waste valorization. A 5% CKS replacement is
recommended for structural elements, while 10–15% is suitable for secondary
members, combined with 0.5–1.0% PPF. Further investigations should evaluate long
term durability and microstructural characteristics.
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