Shiga Yoichi P, Michalak Anna M, Gourdji Sharon M, Mueller Kim L, Yadav Vineet
Department of Civil and Environmental Engineering, Stanford University Stanford, California, USA ; Department of Global Ecology, Carnegie Institution for Science Stanford, California, USA.
Department of Global Ecology, Carnegie Institution for Science Stanford, California, USA.
Geophys Res Lett. 2014 Jun 28;41(12):4381-4388. doi: 10.1002/2014GL059684. Epub 2014 Jun 24.
The ability to monitor fossil fuel carbon dioxide (FFCO) emissions from subcontinental regions using atmospheric CO observations remains an important but unrealized goal. Here we explore a necessary but not sufficient component of this goal, namely, the basic question of the detectability of FFCO emissions from subcontinental regions. Detectability is evaluated by examining the degree to which FFCO emissions patterns from specific regions are needed to explain the variability observed in high-frequency atmospheric CO observations. Analyses using a CO monitoring network of 35 continuous measurement towers over North America show that FFCO emissions are difficult to detect during nonwinter months. We find that the compounding effects of the seasonality of atmospheric transport patterns and the biospheric CO flux signal dramatically hamper the detectability of FFCO emissions. Results from several synthetic data case studies highlight the need for advancements in data coverage and transport model accuracy if the goal of atmospheric measurement-based FFCO emissions detection and estimation is to be achieved beyond urban scales.
Poor detectability of fossil fuel CO emissions from subcontinental regionsDetectability assessed via attribution of emissions patterns in atmospheric dataLoss in detectability due to transport modeling errors and biospheric signal.
利用大气二氧化碳观测来监测次大陆区域化石燃料二氧化碳(FFCO)排放的能力仍然是一个重要但尚未实现的目标。在此,我们探讨了这一目标中一个必要但不充分的组成部分,即次大陆区域FFCO排放可探测性的基本问题。通过考察特定区域的FFCO排放模式在多大程度上需要用来解释高频大气二氧化碳观测中所观测到的变异性来评估可探测性。利用北美35座连续测量塔组成的二氧化碳监测网络进行的分析表明,在非冬季月份,FFCO排放很难被探测到。我们发现,大气传输模式的季节性和生物圈二氧化碳通量信号的复合效应极大地阻碍了FFCO排放的可探测性。几个综合数据案例研究的结果表明,如果要在城市尺度之外实现基于大气测量的FFCO排放检测和估算目标,就需要在数据覆盖范围和传输模型准确性方面取得进展。
次大陆区域化石燃料二氧化碳排放的可探测性差
通过大气数据中排放模式的归因来评估可探测性
由于传输模型误差和生物圈信号导致可探测性降低