Atmospheric Chemistry and Physics
Autor: | Thomas A. Boden, David M. Higdon, Robert J. Andres |
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Jazyk: | angličtina |
Rok vydání: | 2016 |
Předmět: |
Atmospheric Science
010504 meteorology & atmospheric sciences Population 010501 environmental sciences Atmospheric sciences 01 natural sciences Proxy (climate) lcsh:Chemistry chemistry.chemical_compound Temporal scales education Uncertainty analysis 0105 earth and related environmental sciences education.field_of_study business.industry Fossil fuel Information analysis Grid lcsh:QC1-999 chemistry lcsh:QD1-999 Climatology Carbon dioxide Environmental science business lcsh:Physics |
Zdroj: | Atmospheric Chemistry and Physics, Vol 16, Pp 14979-14995 (2016) |
ISSN: | 1680-7324 1680-7316 |
Popis: | Due to a current lack of physical measurements at appropriate spatial and temporal scales, all current global maps and distributions of fossil fuel carbon dioxide (FFCO2) emissions use one or more proxies to distribute those emissions. These proxies and distribution schemes introduce additional uncertainty into these maps. This paper examines the uncertainty associated with the magnitude of gridded FFCO2 emissions. This uncertainty is gridded at the same spatial and temporal scales as the mass magnitude maps. This gridded uncertainty includes uncertainty contributions from the spatial, temporal, proxy, and magnitude components used to create the magnitude map of FFCO2 emissions. Throughout this process, when assumptions had to be made or expert judgment employed, the general tendency in most cases was toward overestimating or increasing the magnitude of uncertainty. The results of the uncertainty analysis reveal a range of 4–190 %, with an average of 120 % (2σ) for populated and FFCO2-emitting grid spaces over annual timescales. This paper also describes a methodological change specific to the creation of the Carbon Dioxide Information Analysis Center (CDIAC) FFCO2 emission maps: the change from a temporally fixed population proxy to a temporally varying population proxy. |
Databáze: | OpenAIRE |
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