Shufen Pan
- ORCiD
- https://orcid.org/0000-0001-7920-1427
- OpenAlex ID
- https://openalex.org/A5054391590 (API record)
Associated Concepts [?]
- Biology
- Environmental science
- Ecology
- Geology
- Geography
- Oceanography
- Physics
- Chemistry
- Organic chemistry
- Ecosystem
- Climate change
- Engineering
- History
- Archaeology
- Agronomy
- Medicine
- Atmospheric sciences
- Terrestrial ecosystem
- Economics
- Computer science
- Quantum mechanics
- Greenhouse gas
- Climatology
- Agriculture
- Paleontology
Authored Works
sorted by decreasing year, and then by display-name
- The Roles of Forests on Water Supply and Quality Across the Mississippi River Basin: a Quantitative Assessment with DLEM Model.
- Quantification of net greenhouse gases emissions from U.S. croplands using data-model integration
- Integrating multi-scale observations, machine learning and systems modeling for coastal Monitoring, Assessment, and Prediction (Coast-MAP) in the context of multiple stresses
- Impacts of future climate change on global food production: perspectives from model simulations of multiple emission scenarios
- Four-century land use and land cover change in the United States
- The interactions between extreme flooding and terrestrial processes during enhanced hurricane events: implication for climate extreme mitigation
- The impacts of agricultural activities on riverine nitrogen footprint of grain crop production in the Mississippi Atchafalaya River Basin, USA
- The Greenhouse Gas Budgets in Central and Western Asia from 1960 to 2019
- Long-term nutrient loading and its effect on N:P stoichiometry at the land-ocean continuum along the Mississippi River Basin
- Integrated systems modeling for sustainable Food-Energy-Water nexus under multi-factor global changes: Innovative comparison between Yellow River and Mississippi River Basins
- Increased soil N2O emissions from the Arctic-Boreal region: A non-negligible non-carbon climate feedback
- Increased N2O Emissions Due to Anthropogenic Nitrogen Input to Global Lakes and Reservoirs
- 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
- Greenhouse gas emissions from global dryland ecosystems during 1960-2020
- Applying deep neural networks and remote sensing to predict yields of major crops in the United States
Linked Co-Authors
- Akihiko Ito
- Ana Bastos
- Andrei P. Sokolov
- Angelo Gurgel
- Benjamin Poulter
- Bo Cheng
- C. Zhang
- Chaoqun Lü
- Charles S. Hopkinson
- Dafeng Hui
- Dubravko Justić
- Dylan B. Millet
- Eric A. Davidson
- Fortunat Joos
- Ge Sun
- Geping Luo
- Hanqin Tian
- Kelley C. Wells
- Prabir K. Patra
- Robert B. Jackson
- Rona L. Thompson
- Steven E. Lohrenz
- Wanyun Shao
- Wei Ren
- Xin‐Zhong Liang
- Yanan You
- Zihao Bian
Linked Collaborating Institutions
- Auburn University, Alabama
- Boston College, Massachusetts
- CAS, Institute of Remote Sensing and Digital Earth, Beijing
- Chiba University, Japan
- Chinese Academy of Sciences, Beijing
- Chinese Academy of Sciences, Xinjiang
- Commonwealth Scientific and Industrial Research Organization, Australia
- Iowa State University
- Laboratoire des Sciences du Climat et de l'Environnement
- Louisiana State University
- Massachusetts Institute of Technology
- Max-Planck-Institute for Biogeochemistry, Jena
- Mississippi State University
- NASA Goddard Space Flight Center, Maryland
- National Institute for Environmental Studies, Japan
- Northwest Agriculture and Forestry University, Yangling
- Norwegian Institute for Air Research
- Oregon State University, Corvallis
- Stanford University, California
- Stockholm University
- U.S. Department of Agriculture
- University of Alabama, Tuscaloosa
- University of Bern, Switzerland
- University of Exeter, UK
- University of Georgia
- University of Kentucky
- University of Leeds, UK
- University of Lund, Sweden
- University of Maryland, Center for Environmental Science
- University of Maryland, College Park
- University of Minnesota, Twin Cities
- Zhejiang University, China
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