Global Journal of Engineering and Technology Research (GJETR)
Index-Based Evaluation and Statistical Modelling of Cassava Peel Ash Blended High-Strength Concrete
Oluwabango, D. A., Afolabi, O. A.
26 January 2026 · Vol. 2, Issue 1, pp. 25-32
DOI: 10.65150/EP-gjetr/V2E1/2026-05
Abstract
The rapid growth of the construction sector has increased the need for sustainable materials. High dependence on Ordinary Portland Cement (OPC) contributes significantly to CO₂ emissions. This study evaluates index-based performance and statistical modelling of cassava peel ash (CPA) blended high-strength concrete. Air-dried cassava peels were incinerated at 600°C for 6 hours and sieved to 75 μm. Coarse aggregates were characterized for specific gravity (2.58–2.64), water absorption (0.87%), flakiness (23.75%), elongation (17.5%), and aggregate crushing value (23.75%). Concrete mixes with 0%, 5%, 10%, and 15% CPA were cast and cured in wet sand and water. Compressive and splitting tensile strengths were measured at 3, 7, 14, 28, and 42 days. Performance and durability indices were calculated, and ANOVA and regression analyses were conducted using SPSS. Compressive durability indices ranged from 92.23 ± 10.46 at 3 days to 101.35 ± 9.30 at 17 days, with values of 73.35 ± 49.30 at 21 days and 49.08 ± 56.68 at 28 days. Splitting tensile durability indices ranged from 101.68 ± 33.95 at 3 days to 105.83 ± 8.04 at 21 days and 95.45 ± 7.76 at 28 days. For CPA replacement levels, compressive indices were 99.73 ± 6.06 (0%), 94.71 ± 4.08 (5%), 81.16 ± 31.03 (10%), and 83.18 ± 47.25 (15%), while splitting tensile indices were 76.46 ± 11.32 (0%), 104.70 ± 7.31 (5%), 114.68 ± 18.05 (10%), and 102.30 ± 5.92 (15%). Normality and homogeneity tests confirmed the suitability of data for statistical modelling. CPA incorporation at 5–10% produced optimal durability indices. It is recommended to limit CPA replacement to these levels for sustainable high-strength concrete production.
Keywords: Cassava Peel Ash, compressive strength, tensile strength, performance index, statistical modelling.
Read the full text on Global Journal of Engineering and Technology Research →The full peer-reviewed article and PDF are hosted on the journal's site (the version of record).
Cite this article
Oluwabango, D. A., Afolabi, & O. A. (2026). Index-Based Evaluation and Statistical Modelling of Cassava Peel Ash Blended High-Strength Concrete. Global Journal of Engineering and Technology Research, 2(1), 25-32. https://doi.org/10.65150/EP-gjetr/V2E1/2026-05
@article{Oluwabango2026,
title = {Index-Based Evaluation and Statistical Modelling of Cassava Peel Ash Blended High-Strength Concrete},
author = {Oluwabango and D. A. and Afolabi and O. A.},
journal = {Global Journal of Engineering and Technology Research},
year = {2026},
volume = {2},
number = {1},
pages = {25-32},
doi = {10.65150/EP-gjetr/V2E1/2026-05},
url = {https://doi.org/10.65150/EP-gjetr/V2E1/2026-05}
}Related articles in GJETR
- Climate-Resilient Foundation Design for Coastal Infrastructure Under Rising Groundwater Conditions: A Review
Olukoju, John Ayomide, Oladosu, Micheal Abimbola · Sept 2026
- The Compliance Gap: Why Audit-Based Cybersecurity Models Fail Critical Infrastructure and the Case for Continuous Control
Amadi, Chukwunenye · Sept 2026
- Edge-Optimized YOLO Architectures for Real-Time Autonomous Vehicle Perception: A Hardware-Aware Co-Design Framework
Christian Sankara, Harouna Wendpanga Yann, Oyesiji, Serif Oyindamola, Aalaj, Emmanuel Eniola, Nwakamma, Stanley · Sept 2026
- A Hardware-In-The-Loop CI/CD Validation Framework for IoT and Vehicle Embedded Systems Using C# and Azure Devops
Ndupu, Kingsley Chinazaekpere, Ajala, Emmanuel Eniola, Oyesiji, Serif Oyindamola, Nwakamma, Stanley · Sept 2026
- Predictive Maintenance Metrics in the Minimisation of Non-Routine Flaring from Rotating Machinery Failure: A Review of Condition Monitoring, Prognostics and the Conditional Chain from Early Detection to Avoided Emergency Pressure Relief
Ekelemu, Oghenekaro, Akano, Oluwaseyi Ayotunde, Adikwu, Friday Emmanuel, Amarahobu, Chibuzor · Sept 2026
