PERFORMANCE AND LIFE-CYCLE COST ANALYSIS OF HYBRID WASTE-MODIFIED ASPHALT CONCRETE
- Authors
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Engr. Ayoade M. Ajani
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Prof. Olugbenga J. Oyedepo
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Prof. (Mrs.) Bamitale D. Oluyemi-Ayibiowuwu
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Dr. Oladunni. O. Alabi
federal university of technology akure
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Engr. Oladapo J. Omomomi
Federal University of Technology Akure
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- Keywords:
- Array, Array, Array, Array
- Abstract
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The increasing demand for sustainable pavement materials has necessitated incorporating waste-derived modifiers to improve performance while reducing environmental impact. This study investigates the mechanical performance and life-cycle cost implications of asphalt concrete modified with lignite, waste polythene (WPT), and worn-out tyre rubber (WOT). Asphalt mixtures were produced with varying proportions of modifiers, and their performance was evaluated using Marshall stability, flow, indirect tensile strength (ITS), rutting resistance, and fatigue tests. The results indicate that the best-performing mixture within the investigated range (7% bitumen, 2% lignite, 2% WPT, and 5% WOT) achieved a Marshall stability of 11.38 kN, representing a substantial improvement over the control mixture, while maintaining a balanced flow of approximately 3.73 mm. The mixture exhibited a 56.5% reduction in rut depth (from 6.2 mm to 2.7 mm) and a 121% increase in fatigue life (from 4.8 × 10? to 10.6 × 10? cycles), indicating enhanced resistance to permanent deformation and cracking. A 20-year deterministic life-cycle cost analysis (LCCA), conducted using a 10% discount rate, showed that although the hybrid mixture incurred a 1.68% higher initial construction cost (?90.10 million/km vs ?88.61 million/km), it resulted in a 22.2% reduction in maintenance cost. This led to a total life-cycle cost reduction from ?108.02 million/km to ?105.20 million/km, corresponding to a net saving of ?2.82 million/km (approximately 2.6%). The findings demonstrate that hybrid modification of asphalt concrete using locally available waste materials significantly enhances mechanical performance and provides measurable long-term economic benefits, making it a viable and sustainable option for road construction in Nigeria.
- References
-
Abdel-Shafy, H. I., and Mansour, M. S. M. (2018).Solid waste issue: Sources, composition, disposal, recycling, and valorisation. Egyptian Journal of Petroleum, 27(4), 1275–1290. https://doi.org/10.1016/j.ejpe.2018.07.003
Allesch, A., and Brunner, P. H. (2014).Assessment methods for solid waste management: A literature review. Waste Management and Research, 32(6), 461–473.
https://doi.org/10.1177/0734242X14535653
AASHTO T245(2018). Resistance to plastic flow of asphalt mixtures using Marshall apparatus. American Association of State Highway and Transportation Officials
AASHTO T321 (2017). Determining fatigue life of compacted asphalt mixtures using repeated flexural bending. AASHTO. American Association of State Highway and Transportation Officials
AASHTO T324. (2019). Hamburg wheel-track testing of compacted asphalt mixtures. American Association of State Highway and Transportation Officials.
ASTM D6931 (2017). Standard test method for indirect tensile strength of asphalt mixtures. ASTM International.
ASTM D5 (2020). Standard test method for penetration of bituminous materials. ASTM International.
ASTM D36: Standard test method for softening point of bitumen (Ring-and-Ball apparatus). ASTM International.
ASTM D70 (2020). Standard test method for specific gravity and density of semi-solid bituminous materials. ASTM International.
ASTM D92. (2020).: Standard test method for flash and fire points by Cleveland open cup tester. ASTM International.
ASTMD113 (2020). Standard test method for ductility of bituminous materials. ASTM International.
ASTM D2171 (2020) Standard test method for viscosity of asphalt by vacuum capillary viscometer. ASTM International.
ASTM D6927 (2021). Standard test method for Marshall stability and flow of asphalt mixtures. ASTM International.
Bamigboye, G. O., Bassey, D. E., Olukanni, D. O., Ngene, B. U., Adegoke, D., Odetoyan, A. O., Kareem, M. A., Enabulele, D. O., and Nworgu, A. T. (2021). Waste materials in highway applications: An overview on generation and utilization implications on sustainability. Journal of Cleaner Production, 283, 124581.https://doi.org/10.1016/j.jclepro.2020.124581
Federal Highway Administration (FHWA). (1998).Life-cycle cost analysis in pavement design. U.S. Department of Transportation.
Katanalp, B. Y., and Ahmedzade, P. (2023). Rheological evaluation and life cycle cost analysis of geopolymer-based asphalt modification. Journal of Materials in Civil Engineering, 35(11). https://doi.org/10.1061/JMCEE7.MTENG-159
Khan, M. U., and Tariq, M. (2025).Transforming plastic and glass waste into high-performance hot mix asphalt additives. International Journal of Pavement Research and Technology. https://doi.org/10.1007/s42947-025-00656-8
Murthy, S. B., Biligiri, K. P., and Pandurangan, V. (2025). Carbon and glass fibre composite waste-modified asphalt binders: Compatibility assessment, dosage optimisation, and performance evaluation. https://doi.org/10.1080/14680629.2025.2599472
Saudy, M., Guirguis, M., Saeed, A., Elshenawy, A., Elkaramany, F., Dawoud, N., Darwish, M., and AbouZeid, M. (2025).Crumb rubber and LDPE-modified asphalt pavement assessment: Mechanical, environmental, and life cycle cost analysis. Sustainability, 17(13), 5785. https://doi.org/10.3390/su17135785
Shah, S. K., Gao, Y., and Abdelfatah, A. (2025). Plastic-waste-modified asphalt for sustainable road infrastructure: A comprehensive review. Sustainability, 17(21), 9832.
https://doi.org/10.3390/su17219832
Singh, A., and Gupta, A. (2024). Mechanical and economical feasibility of LDPE waste-modified asphalt mixtures. Scientific Reports, 14, 25311. https://doi.org/10.1038/s41598-024-75196-5
Xu, F., Zhao, Y., and Li, K. (2022). Using waste plastics as asphalt modifier: A review. Materials, 15(1), 110. https://doi.org/10.3390/ma15010110
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- 2026-06-23
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