Assessment of rheological properties of asphalt binder modified with babassu oil

Reducing dependence on specific types of vegetable oils for Reclaimed Asphalt Pavement (RAP) rejuvenation is critical. Babassu oil, extracted from palm trees, emerges as a promising candidate. This study evaluates the addition of babassu oil to asphalt binder (penetration grade 50/70) in proportions...

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Published in:Case Studies in Construction Materials Vol. 21; p. e03599
Main Authors: de Medeiros Melo Neto, Osires, Minervina Silva, Ingridy, de Figueiredo Lopes Lucena, Leda Christiane, de Figueiredo Lopes Lucena, Luciana, de Sousa, Talita Miranda, Wan Hu, Jong, Youssef, Ahmed
Format: Journal Article
Language:English
Published: Elsevier Ltd 01-12-2024
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Abstract Reducing dependence on specific types of vegetable oils for Reclaimed Asphalt Pavement (RAP) rejuvenation is critical. Babassu oil, extracted from palm trees, emerges as a promising candidate. This study evaluates the addition of babassu oil to asphalt binder (penetration grade 50/70) in proportions ranging from 1 % to 12 %. Both direct addition of the oil and incorporation as part of a modified binder in long-term aged binder were tested. A total of 41 samples underwent physical and rheological testing, complemented by aging protocols. The findings indicate that babassu oil significantly decreases binder stiffness, as evidenced by reduced viscosity and performance grade. Samples containing 7–12 % oil enabled the production of warm mix asphalt at temperatures between 141°C and 150°C. The addition of 3 % or more oil mitigated the effects of thermal aging. The oil-modified binder demonstrated superior performance compared to direct oil addition in terms of reducing the stiffness of aged binder. Higher oil contents (greater than 4 %) enhanced the interaction, potentially allowing for an increase in RAP content. The integration of babassu oil into asphalt not only improves sustainability but also enhances economic efficiency, thereby supporting the principles of a circular economy. [Display omitted]
AbstractList Reducing dependence on specific types of vegetable oils for Reclaimed Asphalt Pavement (RAP) rejuvenation is critical. Babassu oil, extracted from palm trees, emerges as a promising candidate. This study evaluates the addition of babassu oil to asphalt binder (penetration grade 50/70) in proportions ranging from 1 % to 12 %. Both direct addition of the oil and incorporation as part of a modified binder in long-term aged binder were tested. A total of 41 samples underwent physical and rheological testing, complemented by aging protocols. The findings indicate that babassu oil significantly decreases binder stiffness, as evidenced by reduced viscosity and performance grade. Samples containing 7–12 % oil enabled the production of warm mix asphalt at temperatures between 141°C and 150°C. The addition of 3 % or more oil mitigated the effects of thermal aging. The oil-modified binder demonstrated superior performance compared to direct oil addition in terms of reducing the stiffness of aged binder. Higher oil contents (greater than 4 %) enhanced the interaction, potentially allowing for an increase in RAP content. The integration of babassu oil into asphalt not only improves sustainability but also enhances economic efficiency, thereby supporting the principles of a circular economy.
Reducing dependence on specific types of vegetable oils for Reclaimed Asphalt Pavement (RAP) rejuvenation is critical. Babassu oil, extracted from palm trees, emerges as a promising candidate. This study evaluates the addition of babassu oil to asphalt binder (penetration grade 50/70) in proportions ranging from 1 % to 12 %. Both direct addition of the oil and incorporation as part of a modified binder in long-term aged binder were tested. A total of 41 samples underwent physical and rheological testing, complemented by aging protocols. The findings indicate that babassu oil significantly decreases binder stiffness, as evidenced by reduced viscosity and performance grade. Samples containing 7–12 % oil enabled the production of warm mix asphalt at temperatures between 141°C and 150°C. The addition of 3 % or more oil mitigated the effects of thermal aging. The oil-modified binder demonstrated superior performance compared to direct oil addition in terms of reducing the stiffness of aged binder. Higher oil contents (greater than 4 %) enhanced the interaction, potentially allowing for an increase in RAP content. The integration of babassu oil into asphalt not only improves sustainability but also enhances economic efficiency, thereby supporting the principles of a circular economy. [Display omitted]
ArticleNumber e03599
Author de Sousa, Talita Miranda
de Figueiredo Lopes Lucena, Luciana
Wan Hu, Jong
de Medeiros Melo Neto, Osires
de Figueiredo Lopes Lucena, Leda Christiane
Minervina Silva, Ingridy
Youssef, Ahmed
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  givenname: Ingridy
  surname: Minervina Silva
  fullname: Minervina Silva, Ingridy
  organization: Department of Civil Engineering, Federal University of Campina Grande, Aprígio Veloso 882, Campina Grande, PB 58428-830, Brazil
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  givenname: Leda Christiane
  surname: de Figueiredo Lopes Lucena
  fullname: de Figueiredo Lopes Lucena, Leda Christiane
  organization: Department of Civil Engineering, Federal University of Campina Grande, Aprígio Veloso 882, Campina Grande, PB 58428-830, Brazil
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  givenname: Luciana
  surname: de Figueiredo Lopes Lucena
  fullname: de Figueiredo Lopes Lucena, Luciana
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  givenname: Talita Miranda
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  givenname: Jong
  surname: Wan Hu
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  email: jongp24@inu.ac.kr
  organization: Department of Civil and Environmental Engineering, Incheon National University, Incheon 22022, Republic of Korea
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  givenname: Ahmed
  surname: Youssef
  fullname: Youssef, Ahmed
  organization: Civil Engineering Department, El Arish Faculty of Engineering, Sinai University, Egypt
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Keywords Rejuvenating agent
Aging
Costs
Stiffness
Vegetable oil
Rheology
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Snippet Reducing dependence on specific types of vegetable oils for Reclaimed Asphalt Pavement (RAP) rejuvenation is critical. Babassu oil, extracted from palm trees,...
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SubjectTerms Aging
Costs
Rejuvenating agent
Rheology
Stiffness
Vegetable oil
Title Assessment of rheological properties of asphalt binder modified with babassu oil
URI https://dx.doi.org/10.1016/j.cscm.2024.e03599
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