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Official PDF TranslationJournal of Fuel Chemistry and Technology

Research advances in the pyrolysis recycling of waste wind turbine blades

Authors: LI Zhehan; WANG Xiaolu; LEI Fan; HAO Jianxiu; ZHOU Huacong; BAN Yanpeng; LI Na; ZHI Keduan; LIU Quansheng

DOI: 10.1016/S1872-5813(25)60617-7Status: Verified Translated Edition
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Key Findings in This Report

• • Pyrolysis of WWTB can recover glass fibers with mechanical properties that are influenced by process conditions; collaborative disposal with exhaust gas has been shown to improve economic viability (J Cleaner Prod, 2024, 471:143351). • • Catalytic pyrolysis of flexible printed circuit boards (a related composite waste) can produce debrominated aromatics, indicating potential for catalytic upgrading of pyrolysis oils from WWTB (Chem Eng J, 2023, 472:144783). • • Core materials in wind turbine blades significantly affect product evolution during pyrolysis, as shown in studies on end-of-life blades (J Anal Appl Pyrolysis, 2023, 175:106222). • • Isothermal pyrolysis studies of basic components of WWTB reveal distinct product characteristics, enabling tailored process design for different blade compositions (J Anal Appl Pyrolysis, 2023, 171:105964).