New Joint Project to Advance Wind Turbine Recycling
WindEurope, Cefic (the European Chemical Industry Council) and EUCIA (the European Composites Industry Association) have created a cross-sector platform to advance novel approaches to the recycling of wind turbine blades. In 2018 wind energy supplied 14% of the electricity in the EU with 130,000 wind turbines and this number will only grow in the coming decades. Wind turbines blades are made up of a composite material, which boosts the performance of wind energy by allowing lighter and longer blades. Today, 2.5 million t of composite material are in use in the wind energy sector. In the next 5 years 12,000 wind turbines are expected to be decommissioned. Broadening the range of recycling options is critical for the industry’s development. “Wind energy is an increasingly important part of Europe’s energy mix,” said WindEurope CEO, Giles Dickson. “The first generation of wind turbines are now starting to come to the end of their operational life and be replaced by modern turbines. Recycling the old blades is a top priority for us, and teaming up with the chemical and compositors industries will enable us to do it the most effective way.” “The chemical industry plays a decisive role in the transition to a circular economy by investing in the research and development of new materials, which make wind turbine blades more reliable, affordable and recyclable. Innovation is born from collaboration and we look forward to working together to advance wind turbine blade recycling,” commented Marco Mensink, Cefic director general. “The wind energy sector has always been at the forefront of using composites as they are instrumental to sustainable energy generation. With this collaboration we hope to set a great industry standard that ultimately will also help customers in other industries like marine and building & infrastructure,” added EUCIA president, Roberto Frassine. Learnings from wind turbine recycling will then be transferred to other markets to enhance the overall sustainability of composites. Background information Besides recycling through cement co-processing, alternative technologies like mechanical recycling, solvolysis and pyrolysis are being developed, ultimately providing the industry with additional solutions for end-of-life. |
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