Global CO Dynamics Model Output during 1901-2100
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https://purr.purdue.edu/publications/3233/1
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<p>Carbon monoxide (CO) plays an important role in controlling the oxidizing capacity of the atmosphere by reacting with OH radicals that affect atmospheric methane (CH4) dynamics. We developed a process-based biogeochemistry model to quantify the CO exchange between soils and the atmosphere. The model is then&nbsp;extrapolated to global terrestrial ecosystems to estimate global soil gross consumption, gross production, and&nbsp;net flux of the atmospheric CO during the&nbsp;period 1901-2100.</p>
<p>Super- computing resources for this project were provided by the Rosen Center for Advanced Computing at Purdue University for all of the model simulations. Matlab and IDL were used to post-process the output global CO flux data. Final data are presented in text format so any kind of user can read them easily.</p>
<p>The&nbsp;deposit_data_co.zip contains all model output data presented in Liu. et al., 2018 ACP paper, &quot;Global soil consumption of atmospheric carbon monoxide: an analysis using a process-based biogeochemistry model&quot;</p>
<p>1. Code_co contains all co dynamics model code used in paper;<br />
2: Figures contains all figures showed in paper;<br />
3: Simulation_global contains all processed data of model outputs. Original gridded data are too big for uploading, but can be requested directly from Authors;<br />
4: org_simulation_global contains the monthly gridded data for period 2000-2013. Other period data are too big to upload but can be requested directly from Authors;<br />
4: acp-18-7913-2018.pdf is the published paper;<br />
5: Table_acp.xlsx contains all tables in paper.</p>
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提供机构:
Purdue University Research Repository
创建时间:
2019-06-28



