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Wind turbine blade wastes and the environmental impacts in Canada

机译:风力涡轮机叶片废物和加拿大的环境影响

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摘要

Electricity production by wind turbines is considered a clean energy technology, but the life cycle of wind turbines could introduce environmental risks due to waste generation, especially at the decommissioning process. This study predicts the future wind turbine blade waste arising in Canada, throughout all life cycle stages, from manufacturing until end of life, based on the installed capacities of existing Canadian wind farms and projected future installations. Five alternative strategies for managing this waste stream are assessed in terms of life cycle greenhouse gas emissions and primary energy demand, including landfilling, incineration, and mechanical recycling. For the base case scenario, it is observed that the total cumulative waste until 2050 is 275,299 tonnes, with on-site waste accounting for around 75% of this total. Waste generation is concentrated in provinces with greater wind power deployment: Ontario and Quebec alone account for 70% of total blade waste. Life cycle environmental impacts of waste management strategies are dependent on background energy systems, with incineration a significant source of greenhouse gas emissions, particularly when displacing low-carbon grid mixes. Cement kiln coprocessing achieves net zero emission by converting waste into energy and raw materials for the cement. Mechanical recycling can achieve substantial reductions in primary energy demand and greenhouse gas emissions but achieving financial viability would likely require substantial regulatory support.
机译:风力涡轮机的电力生产被认为是一种清洁能源技术,但风力涡轮机的生命周期可能由于废物产生而引入环境风险,特别是在退役过程中。本研究预测了加拿大的未来风力涡轮机叶片废物,在整个生命周期阶段,从制造到生命结束时,基于现有的加拿大风电场和未来安装的安装能力。在生命周期温室气体排放和主要能量需求方面评估了用于管理该废物流的五种替代战略,包括填埋,焚烧和机械回收。对于基本案例场景,观察到总累积浪费直到2050年为275,299吨,现场废物占总废物占该总数的75%。浪费生成集中在有更大的风电部署:安大略省和魁北克省占总刀片废物的70%。生命周期对废物管理策略的环境影响依赖于背景能源系统,焚烧是温室气体排放的重要来源,特别是在置换低碳栅格混合物时。水泥窑协商通过将废物转化为水泥的能量和原料来实现净零排放。机械回收可以实现主要能量需求和温室气体排放的大量减少,但实现金融生存能力可能需要大量的监管支持。

著录项

  • 来源
    《Waste Management》 |2021年第9期|59-70|共12页
  • 作者单位

    Department of Mechanical Engineering College of Engineering University of Saskatchewan Saskatoon S7N 5A9 Canada Department of Mechanical Materials and Manufacturing Engineering Faculty of Engineering University of Nottingham Nottingham NG7 2RD United Kingdom;

    Department of Mechanical Materials and Manufacturing Engineering Faculty of Engineering University of Nottingham Nottingham NG7 2RD United Kingdom Department of Engineering University of Cambridge Trumpington Street Cambridge CB2 1PZ United Kingdom;

    Department of Mechanical Materials and Manufacturing Engineering Faculty of Engineering University of Nottingham Nottingham NG7 2RD United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wind Power; Blade Waste; Prediction; Life Cycle Assessment; Recycling;

    机译:风力;刀片浪费;预言;生命周期评估;回收;

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