Title: Exergy-based analysis of polymer recycling in the automotive sector
Authors: Cemil Koyunoğlu; Tamer Çınar
Addresses: Energy Systems Engineering Department, Engineering Faculty, Yalova University, 77200, Yalova, Turkey ' Sigma A.Ş., Teknopark İstanbul, Pendik, İstanbul, Turkey; Department of Mechanical Engineering, Engineering Faculty, Sakarya University, Sakarya, Turkey
Abstract: In this study, the exergy performance of a biomass drying system was analysed using MATLAB-based simulations under varying operating conditions. Maximum exergy efficiency was 42.3%, while maximum exergy destruction occurred at elevated inlet air temperatures. These results emphasise the reliance of system performance on operating parameters, and the relevance of critical points for improvement regarding energy efficiency. The results presented herein are anticipated to stimulate the development of more effective and sustained biomass drying technologies.
Keywords: polymer recycling; automotive sector; exergy-based analysis; energy consumption; sustainability; environmental impact; recycling levels; polymer types; resource conservation; sustainable practices.
International Journal of Exergy, 2026 Vol.49 No.4, pp.261 - 280
Received: 25 May 2024
Accepted: 03 May 2025
Published online: 15 Apr 2026 *