Steven J. Hall
- ORCiD
- https://orcid.org/0000-0002-7841-2019
- OpenAlex ID
- https://openalex.org/A5032037518 (API record)
Associated Concepts [?]
- Biology
- Ecology
- Geology
- Environmental science
- Chemistry
- Organic chemistry
- Soil science
- Soil water
- Environmental chemistry
- Physics
- Geography
- Engineering
- Ecosystem
- Materials science
- Oceanography
- Quantum mechanics
- Botany
- Medicine
- Paleontology
- Agronomy
- Soil carbon
- Nitrogen
- History
- Computer science
- Archaeology
Authored Works
sorted by decreasing year, and then by display-name
- Quantify Carbonate Directly (Rather Than Removing it) When Measuring Soil Organic Carbon
- Integrating the roles of lignin and soil geochemical properties to improve the prediction accuracy of organic matter decomposition in NEON soils
- How Well Cen We Predict Nitrous Oxide Emissions from Common Nitrogen Measurements? A Mesocosm Test
- How Rapidly Does Reestablishment of Perennial Vegetation on Historically Cropped Soil Contribute to Increased SOC Availability?
- Geochemical and Fungal Controls Over Decomposition of Lignin, Litter, and Soil Organic Carbon at the Continental Scale
- Follow the Water: Using Sub-Field Hydrologic Variation to Inform Climate-Smart Agricultural Practices
- Diversified Cropping Systems Do Not Necessarily Increase Soil Organic Carbon
- Disparities in Observed vs Modeled Soil Nitrogen Mineralization Using a Continentally Distributed Dataset
- An investigation of miscanthus production as potential climate-smart agricultural practice in fields that flood frequently
- Soil Block Mesocosms: A New Approach for Quantifying Nitrate Leaching and Nitrous Oxide Emissions from Maize Cropping Systems
- Significant Metal-Bound Organic Carbon Across Hydrologically Diverse Peatlands
- Reevaluating The Particulate Organic Matter (POM) And Mineral-Associated Organic Matter (MAOM) Dichotomy
- Quantifying Soil Respiration and its Carbon Isotope Ratios to Predict Nitrate Removal from Saturated Riparian Buffers
- Nitrous oxide emissions from drainage-impaired agricultural soils challenge climate sustainability in the US Corn Belt
- Integrating NEON soil lab incubation and neural network into SOM decomposition modeling
- Dual effects of iron on lignin decomposition: A case study from data-model fusion
- Cropped Depressions: Sources or Sinks of Leached Nutrients in Tile-Drained Agricultural Soils?
Linked Co-Authors
- Andy VanLoocke
- Benjamin W. Johnson
- Chaoqun Lü
- Cuijuan Liao
- Enqing Hou
- Jon M. Wells
- Lifen Jiang
- Samantha R. Weintraub
- Stephen C. Hart
- Stephen D. Sebestyen
- Yiqi Luo
- Zhuonan Wang
Linked Collaborating Institutions
- Emory University, Georgia
- Iowa State University
- National Science Foundation
- North Carolina State University
- Northern Arizona University
- Oak Ridge National Laboratory, Tennessee
- Tsinghua University, China
- U.S. Department of Agriculture
- University of California, Merced
- University of Central Florida
- University of Utah
- University of Wisconsin, Madison
- Zhejiang University, China
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