Knowledge Agora



Similar Articles

Title Environmental Performance of Road Asphalts Modified with End-of-Life Hard Plastics and Graphene: Strategies for Improving Sustainability
ID_Doc 6768
Authors Perucca, M; Capuano, L; Magatti, G; Rosa, F; Mantecca, P
Title Environmental Performance of Road Asphalts Modified with End-of-Life Hard Plastics and Graphene: Strategies for Improving Sustainability
Year 2022
Published Processes, 10, 10
Abstract Road construction takes a heavy toll on the environment. Therefore, innovative strategies to improve the environmental performances of this sector are needed, and the use of recycled materials (e.g., plastic) has been recently pursued to achieve this goal. The present work aims to (i) assess the environmental benefits deriving from the use of recycled hard plastics in combination with graphene to generate a new bitumen modifier and related asphalt mixture (AM) formulations (ii) to compare the performance of the bitumen modified using this new modifier with the bitumen modified using a traditional polymer (Styrene-Butadiene-Styrene, SBS) and the non-modified bitumen. A detailed Life Cycle Assessment (LCA) study was performed according to a cradle-to-cradle approach. Different scenarios were compared, including the variability of the pavement's layers thickness and the amount of reclaimed asphalt pavement during the road maintenance cycles. The results demonstrated that the addition of the innovative modifier enhanced the structural performance of AMs, which turns into pavement extended durability, reduced maintenance cycles as well as into reduction in raw material use. The innovative asphalt modifier also creates a synergistic effect by offering a valuable alternative to hard plastic incineration by using it as a secondary raw material. This analysis allowed us to indicate the new-modified AM as the solution with the least environmental burden in all impact categories, suggesting its significant role in implementing new strategies to improve the environmental sustainability of road pavements.
PDF https://www.mdpi.com/2227-9717/10/10/2151/pdf?version=1666679379

Similar Articles

ID Score Article
10946 Russo, F; Eskandarsefat, S; Venturini, L; Viscione, N A complete study on an asphalt concrete modified with graphene and recycled hard-plastics: A case study(2022)
12388 Mattinzioli, T; Sol-Sánchez, M; Carrión, AJD; Moreno-Navarro, F; Rubio-Gámez, MD; Martínez, G Analysis of the GHG savings and cost-effectiveness of asphalt pavement climate mitigation strategies(2021)
21894 Sajid, ZW; Hussian, A; Khan, MUA; Alqahtani, FK; Ullah, F Technical, Economic, and Environmental Sustainability Assessment of Reclaimed Asphalt and Waste Polyethylene Terephthalate Pavements(2024)Sustainability, 16.0, 12
14796 Rout, MKD; Biswas, S; Shubham, K; Sinha, AK A systematic review on performance of reclaimed asphalt pavement (RAP) as sustainable material in rigid pavement construction: Current status to future perspective(2023)
15409 Russo, F; Oreto, C; Veropalumbo, R Promoting resource conservation in road flexible pavement using jet grouting and plastic waste as filler(2022)
3723 Vijayan, V; Manthos, E; Mantalovas, K; Di Mino, G Multi-recyclability of asphalt mixtures modified with recycled plastic: Towards a circular economy(2024)
27640 Vandewalle, D; Antunes, V; Neves, J; Freire, AC Assessment of Eco-Friendly Pavement Construction and Maintenance Using Multi-Recycled RAP Mixtures(2020)Recycling, 5.0, 3
21872 Llopis-Castelló, D; Alonso-Troyano, C; Alvarez-Troncoso, P; Marzá-Beltrán, A; García, A Design of Sustainable Asphalt Mixtures for Bike Lanes Using RAP and Ceramic Waste as Substitutes for Natural Aggregates(2022)Sustainability, 14.0, 23
14769 Blanc, J; Hornych, P; Sotoodeh-Nia, Z; Williams, C; Porot, L; Pouget, S; Boysen, R; Planche, JP; Lo Presti, D; Jimenez, A; Chailleux, E Full-scale validation of bio-recycled asphalt mixtures for road pavements(2019)
2260 Anwar, MK; Shah, SAR; Alhazmi, H Recycling and Utilization of Polymers for Road Construction Projects: An Application of the Circular Economy Concept(2021)Polymers, 13, 8
Scroll