Rheological benchmarking of GTR-modified asphalt binder as a sustainable alternative to SBS modification

Styrene-butadiene-styrene (SBS)-modified binder is engineered for improved performance. However, as a proprietary product, its high-cost limits widespread use. Meanwhile, ground tyre rubber (GTR)-modified binder also has several performance benefits. Regardless, GTR-modified binder has not received widespread application in some regions despite availability of waste tyres. One reason could be a limited empirical understanding of the comparative differences in the performance characteristics of GTR- and SBS-modified binders. Therefore, the objective of this study was to determine GTR dosage of an AC-20 binder that would yield comparable rheological characteristics as a commercial SBS-modified binder. A six-year-old scrap tyre was processed into GTR particles and blended with an AC-20 graded bitumen at dosages ranging from 2% to 12%. Commercial SBS-modified binders containing 1%, 2%, and 3% SBS—corresponding to Superpave binder grades PG 70 − 22, PG 76 − 22, and PG 82 − 22, respectively—served as control. The GTR-modified binder containing 10% GTR content yielded similar or better fatigue cracking, thermal cracking and rutting performance characteristics than the 1% SBS-modified binder (PG 70 − 22). FTIR analysis revealed no detectable chemical alterations in the GTR-modified binder, indicating that the performance improvements observed were due to physical interaction of the GTR and AC-20 binder. Overall, the GTR dosage of 10% yielded rheological characteristics that benchmarked it against 1% SBS-modified binder (PG 70 − 22). This study shows the feasibility of utilizing GTR modification as a sustainable alternative to SBS binder modification.

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Publication Details

Journal
Discover Civil Engineering
Published
2026-09-12
DOI
https://doi.org/10.1007/s44290-026-00607-7
Primary Topic
Asphalt Pavement Performance Evaluation
Type
article
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article

Rheological benchmarking of GTR-modified asphalt binder as a sustainable alternative to SBS modification

Daniel A. Obeng, Ahmed K. Mohammed, Opeyemi A. Gbadewole, Yaw A. Tuffour et al.
Discover Civil Engineering
Asphalt Pavement Performance Evaluation
article

Rheological benchmarking of GTR-modified asphalt binder as a sustainable alternative to SBS modification

Daniel A. Obeng, Ahmed K. Mohammed, Opeyemi A. Gbadewole, Yaw A. Tuffour, Michael S. Appiah, Kenneth A. Tutu
article en

Abstract

Styrene-butadiene-styrene (SBS)-modified binder is engineered for improved performance. However, as a proprietary product, its high-cost limits widespread use. Meanwhile, ground tyre rubber (GTR)-modified binder also has several performance benefits. Regardless, GTR-modified binder has not received widespread application in some regions despite availability of waste tyres. One reason could be a limited empirical understanding of the comparative differences in the performance characteristics of GTR- and SBS-modified binders. Therefore, the objective of this study was to determine GTR dosage of an AC-20 binder that would yield comparable rheological characteristics as a commercial SBS-modified binder. A six-year-old scrap tyre was processed into GTR particles and blended with an AC-20 graded bitumen at dosages ranging from 2% to 12%. Commercial SBS-modified binders containing 1%, 2%, and 3% SBS—corresponding to Superpave binder grades PG 70 − 22, PG 76 − 22, and PG 82 − 22, respectively—served as control. The GTR-modified binder containing 10% GTR content yielded similar or better fatigue cracking, thermal cracking and rutting performance characteristics than the 1% SBS-modified binder (PG 70 − 22). FTIR analysis revealed no detectable chemical alterations in the GTR-modified binder, indicating that the performance improvements observed were due to physical interaction of the GTR and AC-20 binder. Overall, the GTR dosage of 10% yielded rheological characteristics that benchmarked it against 1% SBS-modified binder (PG 70 − 22). This study shows the feasibility of utilizing GTR modification as a sustainable alternative to SBS binder modification.

Discover Civil EngineeringVol. 3(1)
Kwame Nkrumah University of Science and Technology (GH)
Responsible consumption and production
Openalex Percentile: Top 16%
Asphalt Pavement Performance Evaluation
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Rheological benchmarking of GTR-modified asphalt binder as a sustainable alternative to SBS modification — Daniel A. Obeng, Ahmed K. Mohammed, et al. · Discover Civil Engineering (2026) | TGRS Research Map | TGRS