Chaoqun Lü
- ORCiD
- https://orcid.org/0000-0002-1526-0513
- OpenAlex ID
- https://openalex.org/A5063100739 (API record)
Associated Concepts [?]
- Biology
- Environmental science
- Ecology
- Geology
- Geography
- Physics
- Oceanography
- Chemistry
- Ecosystem
- Organic chemistry
- Climate change
- History
- Archaeology
- Agronomy
- Quantum mechanics
- Engineering
- Atmospheric sciences
- Medicine
- Agriculture
- Terrestrial ecosystem
- Greenhouse gas
- Nitrogen
- Climatology
- Meteorology
- Astronomy
Authored Works
sorted by decreasing year, and then by display-name
- Quantifying the Impacts of Tile Drainage on Cropland Evapotranspiration in The Midwest USA: Comparisons between Process-based and Satellite-based Modeling
- Quantification of net greenhouse gases emissions from U.S. croplands using data-model integration
- Integrating the roles of lignin and soil geochemical properties to improve the prediction accuracy of organic matter decomposition in NEON soils
- Half century crop-specific manure management history in the contiguous United States: manure nitrogen and phosphorus application rate, timing, and method
- Geochemical and Fungal Controls Over Decomposition of Lignin, Litter, and Soil Organic Carbon at the Continental Scale
- Four-century land use and land cover change in the United States
- Dynamics of soil N2O emission intensity in the US croplands
- The impacts of agricultural activities on riverine nitrogen footprint of grain crop production in the Mississippi Atchafalaya River Basin, USA
- Spatial variations and temporal dynamics of agricultural nutrient budget: A high-resolution national database for the contiguous United States during 1970-2019
- Modelling nutrient reduction strategies to reduce nitrate loading in tile-drained agricultural catchments
- Long-term nutrient loading and its effect on N:P stoichiometry at the land-ocean continuum along the Mississippi River Basin
- Integrating NEON soil lab incubation and neural network into SOM decomposition modeling
- Integrated systems modeling for sustainable Food-Energy-Water nexus under multi-factor global changes: Innovative comparison between Yellow River and Mississippi River Basins
- Improving Crop Yield Simulation by Better Representing the Dynamic Crop Growth Processes and Management Practices
- Impacts of land use and climate change on hydrological processes and ecosystem productivity in Chinas Yellow River Basin
- Crop Insurance, Fertilizer Use and Crop Yields
Linked Co-Authors
- Bo Cheng
- Charles S. Hopkinson
- Dafeng Hui
- Dubravko Justić
- Hanqin Tian
- Peiyu Cao
- Samantha R. Weintraub
- Shufen Pan
- Steven E. Lohrenz
- Steven J. Hall
- Wei Ren
- Xin‐Zhong Liang
- Yanan You
- Zihao Bian
Linked Collaborating Institutions
- Auburn University, Alabama
- Boston College, Massachusetts
- Chinese Academy of Sciences, Beijing
- Iowa State University
- Louisiana State University
- Mississippi State University
- National Science Foundation
- Northwest Agriculture and Forestry University, Yangling
- Oregon State University, Corvallis
- University of Georgia
- University of Kentucky
- University of Maryland, College Park
- University of Wisconsin, Madison
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