Comprehensive study on the degradation progress of crumb tire rubber during the preparation of terminal blended rubberized asphalt binder

Journal Article (2023)
Author(s)

Yuanyuan Meng (South China University of Technology)

Xiangqian Ye (South China University of Technology)

Fuqiong He (Guangdong Dr. Road Traffic Technology Co. Ltd.)

Zhipeng Chen (South China University of Technology)

Chichun Hu (South China University of Technology)

P. Lin (TU Delft - Pavement Engineering)

Research Group
Pavement Engineering
Copyright
© 2023 Yuanyuan Meng, Xiangqian Ye, Fuqiong He, Zhipeng Chen, Chichun Hu, P. Lin
DOI related publication
https://doi.org/10.1016/j.jclepro.2023.137916
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Publication Year
2023
Language
English
Copyright
© 2023 Yuanyuan Meng, Xiangqian Ye, Fuqiong He, Zhipeng Chen, Chichun Hu, P. Lin
Research Group
Pavement Engineering
Bibliographical Note
Green Open Access added to TU Delft Institutional Repository ‘You share, we take care!’ – Taverne project https://www.openaccess.nl/en/you-share-we-take-care Otherwise as indicated in the copyright section: the publisher is the copyright holder of this work and the author uses the Dutch legislation to make this work public. @en
Volume number
417
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Abstract

Terminal blended rubberized asphalt binder (TB) technology, which blends crumb tire rubber (CR) with asphalt under high interaction conditions, offers a promising waste tire recycling solution for pavement construction. By precisely controlling the degradation progress of CR, it is possible to prepare TB with specific property requirements. However, the degradation progress of CR and its impact on TB property during the TB preparation process remain ambiguous. This hinders the potential for efficient preparation of TB with specific property requirements. This study aims to understand the degradation progress of TB by analyzing binders, soluble fractions, and insoluble fractions obtained at various interaction durations. Microscopic analysis characterizes the chemical composition, morphology, and molecular weight distribution of insoluble and soluble fractions, while macroscopic analysis evaluates the solubility, viscosity, compatibility, and mechanical properties of binders. The results reveal that the degradation of CR during the preparation of TB consists of a desulfurization reaction, depolymerization reaction, and release behavior (carbon black and fillers). Depending on the degradation progress of CR, the interaction process can be classified into three stages: initial (desulfurization reaction dominant stage), middle (depolymerization reaction dominant stage), and last (release behavior dominant stage). The desulfurization reaction of CR is almost completed in the initial stage. The depolymerization reactions and release behavior occur throughout the process. The most pronounced depolymerization reactions occur in the initial stage for natural rubber and in the middle stage for synthetic rubber, while the most significant release behavior occurs in the last stage. Accordingly, in the initial stage, TB shows a rapid evolution in macro properties due to the significant development of degradation reactions, specifically, the notable improvement in viscosity, compatibility, and low-temperature properties, as well as the substantial deterioration in high-temperature properties. In the middle stage, the degradation reaction develops further but slower, with TB exhibits a further but slower evolution in macro properties. In the last stage, the degradation reaction is almost completed, and TB shows a gradual stabilization of macro properties. The findings are expected to achieve precise control of CR degradation progression, which offers the possibility of efficient preparation of TB with specific properties, thus advancing the application of CR in pavement engineering.

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