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Waste and material flow analysis in the end-of-life wind energy system

机译:寿命结束风能系统中的废物和物质流动分析

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In the specific case of French onshore wind farms, waste management of these systems has become an important factor of the wind energy industry's sustainability. The aim of this paper is to quantify wind turbine (WT) material wastes and flows across the Champagne-Ardenne (CA) region from 2002 to 2020. To do so, a material flow analysis (MFA) model was used. It included three maintenance strategies used for onshore wind turbines. Results show that more than 1 million tons of material will ultimately be generated at the EoL of CA wind farms. The main EoL materials are ferrous and non-ferrous metals, polymers, glass and concrete. The main EoL materials are ferrous and non-ferrous metals, polymers, glass and concrete. In this total, blades and composite EoL materials that need to be managed, account for more than 27,000 tons; there are 523,227 tons of steel and iron materials that need to be handled; 6617 tons of copper, and 28,179 tons of aluminum flows. Landfill concrete accounts for 734,230 tons. When the concrete in foundation is not considered, 73% of an average wind turbine can be recycled. With the first generation of WT reaching their EoL phase and taking into account that no dismantling or recycling facilities of WT components have emerged in the French territory, the potential of WT wastes available for treatment (recycle, incinerate, landfill etc.) is still increasing.
机译:在法国陆上风电场的具体情况下,这些系统的废物管理已成为风能产业可持续性的重要因素。本文的目的是量化风力涡轮机(WT)物质废物,从2002年到2020年穿过香槟 - Ardenne(CA)区域。为此,使用了物质流量分析(MFA)模型。它包括用于陆上风力涡轮机的三种维护策略。结果表明,最终将在CA Wind Farms的EOL中产生超过100万吨的材料。主EOL材料是黑色金属和有色金属,聚合物,玻璃和混凝土。主EOL材料是黑色金属和有色金属,聚合物,玻璃和混凝土。在此总,刀片和复合EOL材料需要管理,占27,000多吨;需要处理523,227吨钢和铁材料; 6617吨铜,28,179吨铝流动。垃圾填埋场混凝土占734,230吨。当没有考虑基础的混凝土时,可以再循环73%的平均风力涡轮机。随着第一代WT达到其EOL阶段,同时考​​虑到法国领土上没有出现WT组件的拆卸或回收设施,可用于治疗的WT废物(回收,焚烧,垃圾填埋场等)仍在增加。

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