Journal
MATERIALS AND STRUCTURES
Volume 56, Issue 5, Pages -Publisher
SPRINGER
DOI: 10.1617/s11527-023-02189-7
Keywords
Waste bio-oil; Rejuvenator; Bitumen; Aging; Composition optimization
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The composition of bio-oil rejuvenator was optimized for the efficient utilization of waste bituminous pavement materials and waste bio-oil. The rejuvenation efficiency of the waste bio-oil rejuvenator was evaluated based on rheological properties and chemical composition, and a quantitatively evaluation index was proposed. The central composite design and response surface methodology proved effective in optimizing the composition of rejuvenators. The waste bio-oil rejuvenator showed higher efficiency in rejuvenating aged bitumen compared to commercial rejuvenators, with a rejuvenation efficiency close to 100% for rheological parameters.
In order to efficiently utilize the waste bituminous pavement materials and waste bio-oil, the composition of bio-oil rejuvenator was optimized. The rejuvenation efficiency of the waste bio-oil rejuvenator was evaluated from rheological properties and chemical composition. In addition, a quantitatively evaluation index for the rejuvenation efficiency was proposed. The results show that the central composite design and response surface methodology is effective in optimizing composition of rejuvenators. The dosage of waste bio-oil in the rejuvenated bitumen reached 9%. Compared to another two commercial rejuvenators, waste bio-oil rejuvenator rejuvenated the aged bitumen more effectively. Its rejuvenation efficiency for rheological parameters of aged bitumen was close to 100%. The waste bio-oil rejuvenator restored the performance of aged bitumen by reducing the proportion of macromolecular substances. The rejuvenation efficiency of aromatics, colloidal instability index and carbonyl functional groups were 57.1%, 126.9% and 78.7% respectively.
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