You are in:Home/Publications/Comparative Life Cycle Assessment of Carbon Fiber and Nano-Silica Modified Asphalt Mixtures

Dr. Ahmed Gamal Mahmoud Morsi :: Publications:

Title:
Comparative Life Cycle Assessment of Carbon Fiber and Nano-Silica Modified Asphalt Mixtures
Authors: Marwa Sabry , Moustafa Abdelsalam , Ahmed Gamal , Mohamed S. Eisa 1
Year: 2026
Keywords: LCA; Carbon Fiber; Nano Silica; Modified Asphalt Mix; SimaPro; Ecoinvent.
Journal: Civil Engineering Journal
Volume: 12
Issue: 1
Pages: 386-405
Publisher: Salehan Institute of Higher Education
Local/International: International
Paper Link:
Full paper Ahmed Gamal Mahmoud Morsi_Paper 5.pdf
Supplementary materials Not Available
Abstract:

In recent years, several studies have focused on enhancing the performance of asphalt mixtures using various additives; however, the environmental implications of these modifications have received limited attention. Accordingly, this study aims to evaluate the environmental impacts of asphalt mixtures incorporating carbon fiber (CF) and nano silica (NS) using the Life Cycle Assessment (LCA) methodology. In the current study, four mixtures were modelled and analyzed using SimaPro software: conventional asphalt mix (CAM), carbon fiber asphalt mix (CFAM), nano silica asphalt mix (NSAM), and carbon fiber–nano silica asphalt mix (CFNSAM). The assessment included the production cycle from raw material extraction to wearing surface installation, integrating laboratory performance data with the Ecoinvent v3.6 inventory. Results indicated that CAM exhibited the lowest environmental burden, whereas CFNSAM showed the highest impact resulting from the considerable energy inputs associated with carbon fiber fabrication. NSAM offered a balanced outcome, with moderate environmental impacts and satisfactory mechanical performance, positioning it as a more sustainable alternative. Overall, nano silica modification demonstrates promising potential for eco-efficient pavement applications.

Google ScholarAcdemia.eduResearch GateLinkedinFacebookTwitterGoogle PlusYoutubeWordpressInstagramMendeleyZoteroEvernoteORCIDScopus