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Article

Synthesis and Characterisation of Alginate-Based Capsules Containing Waste Cooking Oil for Asphalt Self-Healing †

by
Jose Norambuena-Contreras
1,*,
Jose L. Concha
1,
Luis E. Arteaga-Pérez
2 and
Irene Gonzalez-Torre
1
1
LabMAT, Department of Civil and Environmental Engineering, University of Bío-Bío, Concepción 4051381, Chile
2
LPTC, Department of Wood Engineering, University of Bío-Bío, Concepción 4051381, Chile
*
Author to whom correspondence should be addressed.
This paper is an extended version of the awarded best paper published in the Resilient Materials 4 Life International Conference (RM4L2020), Cambridge, UK, 20–23 September 2021.
Appl. Sci. 2022, 12(5), 2739; https://doi.org/10.3390/app12052739
Submission received: 12 January 2022 / Revised: 21 February 2022 / Accepted: 3 March 2022 / Published: 7 March 2022
(This article belongs to the Special Issue Selected Papers in the Section Materials 2022)

Abstract

This paper presents the synthesis and characterisation of biopolymeric capsules for asphalt self-healing. A sodium alginate biopolymer extracted from the cell wall of brown algae was used as the encapsulating material to contain Waste Cooking Oil (WCO) as a potential encapsulated rejuvenating agent for aged bitumen. Polynuclear capsules were synthesised by ionic gelation. The size, surface aspect and internal structure of the WCO capsules were evaluated using Optical and Scanning Electron Microscopy. The physical-chemical properties and thermal stability of the WCO capsules and their components were also evaluated. Moreover, the diffusion process and self-healing capability of the released WCO on cracked bitumen test samples were determined by image analysis through fluorescence microscopy. The main results of this study showed that the WCO capsules presented a suitable morphology to be mixed in asphalt mixtures. WCO capsules and their components presented mechanical and thermal stability and physical-chemical properties which suggest their feasibility for self-healing applications. It was proven that the encapsulated WCO can diffuse in the aged bitumen, reducing its viscosity and promoting the self-healing of microcracks.
Keywords: waste cooking oil; polynuclear capsule; asphalt rejuvenator; ageing; self-healing waste cooking oil; polynuclear capsule; asphalt rejuvenator; ageing; self-healing

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MDPI and ACS Style

Norambuena-Contreras, J.; Concha, J.L.; Arteaga-Pérez, L.E.; Gonzalez-Torre, I. Synthesis and Characterisation of Alginate-Based Capsules Containing Waste Cooking Oil for Asphalt Self-Healing. Appl. Sci. 2022, 12, 2739. https://doi.org/10.3390/app12052739

AMA Style

Norambuena-Contreras J, Concha JL, Arteaga-Pérez LE, Gonzalez-Torre I. Synthesis and Characterisation of Alginate-Based Capsules Containing Waste Cooking Oil for Asphalt Self-Healing. Applied Sciences. 2022; 12(5):2739. https://doi.org/10.3390/app12052739

Chicago/Turabian Style

Norambuena-Contreras, Jose, Jose L. Concha, Luis E. Arteaga-Pérez, and Irene Gonzalez-Torre. 2022. "Synthesis and Characterisation of Alginate-Based Capsules Containing Waste Cooking Oil for Asphalt Self-Healing" Applied Sciences 12, no. 5: 2739. https://doi.org/10.3390/app12052739

APA Style

Norambuena-Contreras, J., Concha, J. L., Arteaga-Pérez, L. E., & Gonzalez-Torre, I. (2022). Synthesis and Characterisation of Alginate-Based Capsules Containing Waste Cooking Oil for Asphalt Self-Healing. Applied Sciences, 12(5), 2739. https://doi.org/10.3390/app12052739

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