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Interannual Variability and Trends of CH4, CO and OH Using the Computationally-Efficient CH4-CO-OH (ECCOH) Module
- Publication Year :
- 2015
- Publisher :
- United States: NASA Center for Aerospace Information (CASI), 2015.
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Abstract
- Methane (CH4) is the second most important anthropogenic greenhouse gas (GHG). Its 100-year global warming potential (GWP) is 34 times larger than that for carbon dioxide. The 100-year integrated GWPof CH4 is sensitive to changes in hydroxyl radical (OH) levels.Oxidation of CH4 and carbon monoxide (CO) by OH is the main loss process, thus affecting the oxidizing capacity of the atmosphere and contributing to the global ozone background. Limitations of using archived, monthly OH fields for studies of methane's and COs evolution are that feedbacks of the CH4-CO-OH system on methane, CO and OH are not captured. In this study, we employ the computationally Efficient CH4-CO-OH (ECCOH) module (Elshorbany et al., 2015) to investigate the nonlinear feedbacks of the CH4-CO-OH system on the interannual variability and trends of the CH4, CO, OH system.
- Subjects :
- Earth Resources And Remote Sensing
Subjects
Details
- Language :
- English
- Database :
- NASA Technical Reports
- Notes :
- NNG11HP16A, , NNG12HP06C, , NNX12AD03A
- Publication Type :
- Report
- Accession number :
- edsnas.20160000373
- Document Type :
- Report