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Efficiency of Sustainable Rejuvenation of Bitumen Using Bio-based Rejuvenators and Waste Oils

Hu, Yongping; Ryan, Jack; Allanson, Max; Wang, Haopeng; Zhou, Lu; Airey, Gordon

Authors

Yongping Hu

Jack Ryan

Max Allanson

Haopeng Wang



Abstract

This study primarily investigated the efficacy of sustainable rejuvenators in restoring the properties of aged bitumen as well as developing a method for optimising rejuvenator dosages. The rheological properties, determined via frequency sweep and linear amplitude sweep tests, were assessed using a virgin binder as a reference point. The findings revealed that all sustainable rejuvenators tested are viable, with a particular commercial product and tall oil (TO) exhibiting superior effectiveness. Conversely, waste cooking oil (WCO) and waste motor oil (WMO) presented sub-optimal results. The proposed rejuvenation index demonstrates its utility in evaluating rejuvenation efficacy and predicting the optimal dosages for any given rejuvenators. The fatigue resistance of the rejuvenated binders was satisfactory, and a reduction in strain sensitivity was observed. Furthermore, Fourier transform infrared spectroscopy (FTIR) analysis elucidated the rejuvenation mechanism, indicating that the rejuvenation process primarily involves physical softening rather than a chemical reversal of ageing. Rejuvenators mainly infuse saturates into aged bitumen, whereas ageing predominantly reduces the aromatics, thus making a complete restoration of the aged bitumen’s properties unachievable.

Citation

Hu, Y., Ryan, J., Allanson, M., Wang, H., Zhou, L., & Airey, G. (2024, June). Efficiency of Sustainable Rejuvenation of Bitumen Using Bio-based Rejuvenators and Waste Oils. Presented at 14th International Conference on Asphalt Pavements ISAP2024, Montreal, QC, Canada

Presentation Conference Type Conference Paper (published)
Conference Name 14th International Conference on Asphalt Pavements ISAP2024
Start Date Jun 2, 2024
End Date Jun 6, 2024
Online Publication Date Dec 24, 2024
Publication Date 2024
Deposit Date Feb 20, 2025
Publicly Available Date Dec 25, 2025
Publisher Springer
Peer Reviewed Peer Reviewed
Pages 689-697
Book Title 14th International Conference on Asphalt Pavements ISAP2024 Montreal
ISBN 9783031672514
DOI https://doi.org/10.1007/978-3-031-67252-1_114
Public URL https://nottingham-repository.worktribe.com/output/43362639
Publisher URL https://link.springer.com/chapter/10.1007/978-3-031-67252-1_114