首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Multiscale observations of CO2 13CO2 and pollutants at Four Corners for emission verification and attribution
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Multiscale observations of CO2 13CO2 and pollutants at Four Corners for emission verification and attribution

机译:在四个角对CO2、13CO2和污染物进行多尺度观测以进行排放验证和归因

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摘要

There is a pressing need to verify air pollutant and greenhouse gas emissions from anthropogenic fossil energy sources to enforce current and future regulations. We demonstrate the feasibility of using simultaneous remote sensing observations of column abundances of CO2, CO, and NO2 to inform and verify emission inventories. We report, to our knowledge, the first ever simultaneous column enhancements in CO2 (3–10 ppm) and NO2 (1–3 Dobson Units), and evidence of δ13CO2 depletion in an urban region with two large coal-fired power plants with distinct scrubbing technologies that have resulted in ∆NOx/∆CO2 emission ratios that differ by a factor of two. Ground-based total atmospheric column trace gas abundances change synchronously and correlate well with simultaneous in situ point measurements during plume interceptions. Emission ratios of ∆NOx/∆CO2 and ∆SO2/∆CO2 derived from in situ atmospheric observations agree with those reported by in-stack monitors. Forward simulations using in-stack emissions agree with remote column CO2 and NO2 plume observations after fine scale adjustments. Both observed and simulated column ∆NO2/∆CO2 ratios indicate that a large fraction (70–75%) of the region is polluted. We demonstrate that the column emission ratios of ∆NO2/∆CO2 can resolve changes from day-to-day variation in sources with distinct emission factors (clean and dirty power plants, urban, and fires). We apportion these sources by using NO2, SO2, and CO as signatures. Our high-frequency remote sensing observations of CO2 and coemitted pollutants offer promise for the verification of power plant emission factors and abatement technologies from ground and space.
机译:迫切需要验证人为化石能源中的空气污染物和温室气体排放,以执行当前和将来的法规。我们展示了使用同时进行的CO2,CO和NO2丰度的遥感观测来告知和验证排放清单的可行性。据我们所知,有史以来第一个同时色谱柱同时提高了CO2(3-10 ppm)和NO2(1-3 Dobson单位)的色谱柱,并证明了δ 13 CO2消耗的城市两个具有不同洗涤技术的大型燃煤电厂,其∆NOx / ∆CO2排放比相差两个因子。地面总大气柱痕量气体的丰度同步变化,并且与烟流截获过程中的同时进行原位测量具有良好的相关性。从原位大气观测得出的∆NOx / ∆CO2和∆SO2 / ∆CO2的排放比与叠层监测仪报告的排放比一致。在精细调整后,使用烟囱内排放物进行的正演模拟与远距离色谱柱的CO2和NO2羽流观测结果一致。观察到的和模拟的∆NO2 / ∆CO2列均表明该区域很大一部分(70-75%)被污染。我们证明了∆NO2 / ∆CO 2 的色谱柱排放比可以解决具有不同排放因子(清洁和肮脏的发电厂,城市和火灾)的源的日常变化。我们使用NO 2 ,SO 2 和CO作为签名分配这些来源。我们对CO 2 和共排放污染物的高频遥感观测为从地面和太空验证电厂排放因子和减排技术提供了希望。

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