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Toward Accurate, Policy-Relevant Fossil Fuel CO_2 Emission Landscapes

机译:朝准确,政策相关的化石燃料CO_2排放景观

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摘要

The bottom-up (BU) approach has been used to develop spatiotemporally resolved, sectoraliy disaggregated fossil fuel CO_2 (FFCO_2) emission data products. These efforts are critical constraints to atmospheric assessment of anthropogenic fluxes in addition to offering the climate change policymaking community usable information to guide mitigation. In the United States, there are two high-resolution FFCO_2 emission data products, Vulcan and the Anthropogenic Carbon Emissions System (ACES). As a step toward developing improved, accurate, and detailed FFCO_2emission landscapes, we perform a comparison of the two data products. We find that while agreeing on total FFCO_2 emissions at the aggregate scale (relative difference = 1.7%), larger differences occur at smaller spatial scales and in individual sectors. Differences in the smaller-emitting sectors are likely errors in ACES input data or emission factors. ACES advances the approach for estimating emissions in the gas and oil sector, while Vulcan shows better geocoordinate correction in the electricity production sector. Differences in the subcounty residential and commercial building sectors are driven by different spatial proxies and suggest a task for future investigation. The gridcell absolute median relative difference, a measure of the average gridcell-scale relative difference, indicates a 53.5% difference. The recommendation for improved BU granular FFCO_2 emission estimation includes review, assessment, and archive of point source geolocations, CO emission input data, CO and CO_2emission factors, and uncertainty approaches including those due to spatial errors. Finally, intensives where local utility data are publicly available could test the spatial proxies used in estimating residential and commercial building emissions. These steps toward best practices will lead to more accurate, granular emissions, enabling optimal emission mitigation policy choices.
机译:自下而上(BU)方法已被用于开发出旺蓝分辨的塞培,分类化石燃料CO_2(FFCO_2)排放数据产品。除了提供气候变化决策界可用信息以导向缓解时​​,这些努力对人体化通量的大气评估是急性的限制。在美国,有两种高分辨率FFCO_2排放数据产品,硫磺和人为碳排放系统(ACES)。作为开发改进,准确和详细的FFCO_2Emission景观的一步,我们执行两个数据产品的比较。我们发现,同意总尺度的FFCO_2排放量(相对差异= 1.7%),在较小的空间尺度和各个部门中发生更大的差异。较小发光扇区的差异可能在ACES输入数据或排放因子中的错误。 ACES推进了估算天然气和石油部门排放的方法,而瓦尔坎在电力生产业部门表现出更好的地球坐标矫正。子公司住宅和商业建筑部门的差异由不同的空间代理驱动,并提出了未来调查的任务。 Gridcell绝对中值相对差异,衡量平均网格相对差异,表示差异为53.5%。改进的BU粒子FFCO_2排放估计的建议包括审查,评估和档案点源地理,共同源地理,CO排放输入数据,CO和CO_2EMASSION因子,以及包括由于空间误差导致的不确定性方法。最后,局部公用事业数据公开可用的强烈可能会测试用于估算住宅和商业建筑排放的空间代理。最佳实践的这些步骤将导致更准确,粒度的排放,从而实现最佳排放缓解政策选择。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第16期|9896-9907|共12页
  • 作者单位

    School of Informatics Computing and Cyber Systems Northern Arizona University Flagstaff Arizona 85287 United States School of Life Sciences Arizona State University Tempe Arizona 85281 United States;

    School of Informatics Computing and Cyber Systems Northern Arizona University Flagstaff Arizona 85287 United States School of Life Sciences Arizona State University Tempe Arizona 85281 United States;

    School of Life Sciences Arizona State University Tempe Arizona 85281 United States;

    School of Informatics Computing and Cyber Systems Northern Arizona University Flagstaff Arizona 85287 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:37:00

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