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A Review of Ongoing Advancements in Soil and Water Assessment Tool (SWAT) for Nitrous Oxide (N2o) Modeling
2020
Atmosphere
, Denitrification-Decomposition (DNDC) and Soil and Water Assessment Tool (SWAT). ...
In recent years, researchers have focused on understanding and simulating the N2O emission processes from agricultural farms and/or watersheds by using process-based models like Daily CENTURY (DAYCENT) ...
Coupler revisions include integration (simultaneous) of SWAT with another biogeochemical model, using an independent platform like OpenMI. ...
doi:10.3390/atmos11050450
fatcat:hqz5ordtqrdpfju6omfw46foym
Toward sustainable revegetation in the Loess Plateau using coupled water and carbon management
2021
Engineering
We used a coupled hydro-biogeochemical model to simulate the changes of a few key components in terms of water and carbon by designing a variety of hypothetical land use conversion scenarios derived from ...
However, revegetation-induced land use changes can influence both water and carbon cycles, and the diverse consequences were not well understood. ...
We sincerely thank the editor and two anonymous reviewers for their valuable comments/suggestions on the article. ...
doi:10.1016/j.eng.2020.12.017
fatcat:xpmsxqi55fhajmdiegpb5mkfta
An improved process-oriented hydro-biogeochemical model for simulating dynamic fluxes of methane and nitrous oxide in alpine ecosystems with seasonally frozen soils
2021
Biogeosciences
The hydro-biogeochemical model Catchment Nutrient Management Model – DeNitrification-DeComposition (CNMM-DNDC) was established to simultaneously quantify ecosystem productivity and losses of nitrogen and ...
This study indicates the possibility for utilizing the process-oriented model CNMM-DNDC to predict hydro-biogeochemical processes, as well as related gas emissions, in seasonally frozen regions. ...
Biogeochemical models, such as DNDC, LandscapeD-NDC, WNMM, MOMOS, CENTURY and DayCent, are effective tools for simulating the cycling of nitrogen and carbon and quantifying the effects of climate change ...
doi:10.5194/bg-18-4211-2021
fatcat:6nldxqumfvekta6o4egrlp52wa