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首页> 外文期刊>Waste Disposal & Sustainable Energy >Resource and waste quantification scenarios for wind turbine decommissioning in the United Kingdom
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Resource and waste quantification scenarios for wind turbine decommissioning in the United Kingdom

机译:英国风力涡轮机退役的资源和废物量化场景

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Abstract Wind power produces more electricity than any other form of renewable energy in the United Kingdom (UK) and plays a key role in decarbonisation of the grid. Although wind energy is seen as a sustainable alternative to fossil fuels, there are still several environmental impacts associated with all stages of the lifecycle of a wind farm. This study determined the material composition for wind turbines for various sizes and designs and the prevalence of such turbines over time, to accurately quantify waste generation following wind turbine decommissioning in the UK. The end of life stage is becoming increasingly important as a rapid rise in installation rates suggests an equally rapid rise in decommissioning rates can be expected as wind turbines reach the end of their 20–25-year operational lifetime. Waste data analytics were applied in this study for the UK in 5-year intervals, stemming from 2000 to 2039. Current practices for end of life waste management procedures have been analysed to create baseline scenarios. These scenarios have been used to explore potential waste management mitigation options for various materials and components such as reuse, remanufacture, recycling, and heat recovery from incineration. Six scenarios were then developed based on these waste management options, which have demonstrated the significant environmental benefits of such practices through quantification of waste reduction and greenhouse gas (GHG) emissions savings. For the 2015–2019 time period, over 35 kilotonnes of waste are expected to be generated annually. Overall waste is expected to increase over time to more than 1200 kilotonnes annually by 2039. Concrete is expected to account for the majority of waste associated with wind turbine decommissioning initially due to foundations for onshore turbines accounting for approximately 80% of their total weight. By 2035–2039, steel waste is expected to account for almost 50% of overall waste due to the emergence of offshore turbines, the foundations of which are predominantly made of steel.
机译:抽象的风能比英国(英国)的任何其他形式的可再生能源产生的电力更多,并且在脱碳中发挥了关键作用。尽管风能被视为化石燃料的可持续替代品,但仍然存在与风电场生命周期的各个阶段有关的几种环境影响。这项研究确定了各种尺寸和设计的风力涡轮机的材料组成以及此类涡轮机的流行,以准确量化英国风力涡轮机退役后的废物产生。随着安装速度的迅速上升表明,随着风力涡轮机达到20 - 25年的运营寿命结束,可以预期退役率同样迅速提高,生命阶段的终结阶段变得越来越重要。在这项研究中以5年的间隔应用了废物数据分析,从2000年到2039年。目前已经分析了生命终止终止的实践,以创建基线场景。这些方案已用于探索各种材料和组件的潜在废物管理缓解选择,例如重用,再制造,回收和焚化中的热量回收。然后根据这些废物管理选择开发了六个方案,这些方案通过量化减少废物和温室气体(GHG)的排放,证明了这种做法的显着环境利益。在2015 - 2019年期间,预计每年将产生超过35千吨的废物。预计到2039年,总体废物预计将随着时间的流逝增加至1200千座。预计混凝土预计将占与风力涡轮机退役相关的大部分废物,这最初是由于岸涡轮机的基础约为其总重量的80%。到2035 - 2039年,由于近海涡轮机的出现,钢废物预计将占整体废物的近50%,其基础主要由钢制成。

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