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Impacts of Landscape Evolution on Heterotrophic Carbon Loss in Intensively Managed Landscapes
Qina Yan,
Praveen Kumar
Prairie Research Institute
Civil and Environmental Engineering
Climate, Meteorology and Atmospheric Sciences
Institute for Sustainability, Energy, and Environment
National Center for Supercomputing Applications (NCSA)
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peer-review
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Keyphrases
Heterotrophic
100%
Landscape Evolution
100%
Carbon Loss
100%
Intensively Managed Landscapes
100%
Soil Organic Carbon
66%
Soil Transport
50%
Transport Rate
33%
Spatial Variability
33%
Accelerated Soil Erosion
33%
Carbon Redistribution
33%
High Temporal Resolution
16%
Strong Correlation
16%
Mechanical Mixing
16%
Lack of Understanding
16%
Carbon Surface
16%
Agricultural Fields
16%
Soil Respiration
16%
Net Primary Productivity
16%
Tillage
16%
Biogeochemical Transformations
16%
Microbial Decomposition
16%
Organic Carbon Transport
16%
Earth and Planetary Sciences
Landscape Evolution
100%
Soil Organic Carbon
100%
Soil Erosion
50%
Spatial Variation
25%
Planetary Atmosphere
25%
Soil Respiration
25%
Carbon Transport
25%