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Evaluating emissions reductions from zero waste strategies under dynamic conditions: A case study from Boston

机译:在动态条件下评估排放减少零废物策略:波士顿的案例研究

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摘要

In 2018 and 2019 the City of Boston (Massachusetts, USA) conducted zero waste and carbon neutral planning efforts. Here we present the results of an accompanying analysis of the impacts of zero waste strategies on greenhouse gases (GHG) emissions associated with waste treatment. Emissions analysis in the waste sector is complicated by the contribution of significant indirect impacts that can exhibit temporal and spatial heterogeneity. For example, lifecycle GHG analysis of waste-to-energy combustion grants credits for the emissions avoided due to electricity generated from organic waste (biogenic carbon) that displaces electricity generation that could be carbon-emitting. As electricity grids decarbonize, this credit approaches zero. Long-term emissions planning needs to account for such dynamics to realistically assess the GHG mitigation potential associated with alternative waste management strategies. Here, we seek to capture these dynamics in a forward-looking analysis of waste sector emissions under a zero-waste strategy for the City of Boston. Using publicly available data sets such as EPA's Waste Reduction Model (WARM), we show that the implementation of zero waste strategies reduces the combustion of plastics and biomass in waste-to-energy (WtE) combustion facilities and associated GHG emissions. While WtE has been considered less-carbon intensive than other forms of waste treatment and fossil-based electricity generation, our analysis shows that more renewables will eventually eliminate the perceived GHG benefits associated with waste-to-energy combustion. While our approach provides policymakers with an understanding of the impacts of decisions in a dynamic context, we also identify common knowledge gaps in conducting forward-looking waste-GHG assessments.
机译:2018年和2019年波士顿(马萨诸塞州)(马萨诸塞州)的城市进行了零废物和碳中立规划努力。在这里,我们展示了对与废物处理相关的温室气体(GHG)排放的零废物策略的影响的伴随分析。废物部门的排放分析因贡献可能表现出时间和空间异质性的显着间接影响而变得复杂。例如,由于从有机废物(生物碳)产生的电力产生的电力,避免了废物对能量燃烧赠款的生命周期GHG分析避免的排放量。随着电网脱碳,这种信贷方法为零。长期排放计划需要考虑到这种动态,以实际评估与替代废物管理策略相关的温室气体缓解潜力。在这里,我们寻求在波士顿市零废物策略下对废物扇区排放的前瞻性分析来捕捉这些动态。使用诸如EPA的废物减少模型(温暖)等公共数据集,我们表明零废物策略的实施减少了塑料和生物量在废能(WTE)燃烧设施和相关的温室气体排放中的燃烧。虽然WTE被认为的碳密集少于其他形式的废物处理和化石的发电,但我们的分析表明,更多的可再生能源最终将消除与垃圾到能燃烧相关的感知温室气体益处。虽然我们的方法为政策制定者提供了对动态背景下的决策的影响,但我们还确定了在前瞻性垃圾评估中识别共同的知识差距。

著录项

  • 来源
    《Waste Management》 |2021年第5期|170-179|共10页
  • 作者单位

    Institute for Sustainable Energy Boston University Boston MA USA Department of Earth and Environment Boston University Boston MA USA Applied Economics Clinic Arlington MA USA;

    Institute for Sustainable Energy Boston University Boston MA USA Department of Earth and Environment Boston University Boston MA USA;

    Institute for Sustainable Energy Boston University Boston MA USA Department of Earth and Environment Boston University Boston MA USA;

    Institute for Sustainable Energy Boston University Boston MA USA Department of Earth and Environment Boston University Boston MA USA;

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

    Emissions; Life cycle assessment; Zero waste; Planning;

    机译:排放;生命周期评估;零浪费;规划;

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