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A review on recycling and reuse methods for carbon fiber/glass fiber composites waste from wind turbine blades

期刊

COMPOSITES PART B-ENGINEERING
卷 215, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2021.108768

关键词

Composites waste; Recycling methods; Glass fibers; Carbon fibers

资金

  1. Defence Research and Development Organisation, India [IITM/DRDO/SJ/249]

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The development of novel strategies for recycling and reusing fiber composites is driven by environmental and economic factors. This paper reviews various recycling methods and reuse of recovered fibers, highlighting the potential for high-value structural applications in the future. Challenges in fiber recycling and the high energy intensity of manufacturing glass and carbon fibers make them promising in terms of both environmental and economic perspectives.
The development of novel strategies for recycling and reusing fiber composites is driven by various environmental and economic factors. Recycling materials mean that materials are processed with feasible processing methods or environment-friendly methods without deterioration of mechanical or physical performance enabling their reuse. Recycling end-of-life (EOL) waste of wind turbine (WT) blade composites is a critical challenge for renewable energy sector. This paper reviews various recycling methods (mechanical, thermal, chemical, and hybrid) and reuse of reclaimed fiber composites of carbon and glass fibers. Physical, mechanical, and chemical properties of recovered fibers and new composites (made of recovered fibers) have been discussed in detail. This paper aims to find out the optimum recycling process from existing recycling methods to recycle EOL waste of WT blades. Glass fibers (GFs) and carbon fibers (CFs) are energy-intensive to manufacture, which means these have high recycling capability in terms of the environment as well as an economic perspective. Challenges in the recycling of fibers have been identified from the available literature; future research possibilities with promising values of recovered fibers to reuse in some high-value structural applications have been highlighted.

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