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Synthesis of Urban CO_2 Emission Estimates from Multiple Methods from the Indianapolis Flux Project (INFLUX)

机译:印第安纳波利斯通量项目(INFLUX)多种方法合成的城市CO_2排放估算值

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Urban areas contribute approximately threequarters of fossil fuel derived CO2 emissions, and many cities have enacted emissions mitigation plans. Evaluation of the effectiveness of mitigation efforts will require measurement of both the emission rate and its change over space and time. The relative performance of different emission estimation methods is a critical requirement to support mitigation efforts. Here we compare results of CO2 emissions estimation methods including an inventory-based method and two different top-down atmospheric measurement approaches implemented for the Indianapolis, Indiana, U.S.A. urban area in winter. By accounting for differences in spatial and temporal coverage, as well as trace gas species measured, we find agreement among the wintertime whole-city fossil fuel CO2 emission rate estimates to within 7%. This finding represents a major improvement over previous comparisons of urban-scale emissions, making urban CO2 flux estimates from this study consistent with local and global emission mitigation strategy needs. The complementary application of multiple scientifically driven emissions quantification methods enables and establishes this high level of confidence and demonstrates the strength of the joint implementation of rigorous inventory and atmospheric emissions monitoring approaches.
机译:城市地区贡献了大约四分之三的化石燃料产生的二氧化碳排放,许多城市已经制定了减排计划。要评估缓解措施的有效性,就需要测量排放率及其随时间和空间的变化。不同排放估算方法的相对性能是支持减排工作的关键要求。在这里,我们比较了CO2排放估算方法的结果,包括基于清单的方法和两种不同的自顶向下的大气测量方法,这些方法针对冬季在美国印第安纳州印第安纳波利斯市实施。通过考虑时空覆盖范围以及测得的痕量气体种类的差异,我们发现冬季全市化石燃料二氧化碳排放率估算值之间的一致性在7%之内。这一发现代表了对以前的城市规模排放比较的一项重大改进,使本研究得出的城市CO2通量估算值与地方和全球减排战略的需求相符。多种科学驱动的排放量化方法的补充应用使并建立了这种高度的信心,并证明了联合执行严格的清单和大气排放监测方法的实力。

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