REAP Study for Resilient Economic Agricultural Practices in West Lafayette, Indiana

REAP Study for Resilient Economic Agricultural Practices in West Lafayette, Indiana
Corn stover is an important livestock feed and will probably be a major source of renewable bioenergy, especially in the U.S. Corn Belt. Overly aggressive removal of stover, however, could lead to greater soil erosion and hurt producer yields in the long-run. Good residue management practices could help prevent erosion of valuable topsoil by wind and water while still providing a revenue source for producers, either as livestock feed or for use in renewable bioenergy. Plant residues also contribute to soil structure, nutrient cycling, and help sustain the soil microbiota. Good residue management could also help control the loss of greenhouse gases from agricultural soils that could add to already increasing levels of atmospheric greenhouse gases contributing to global climate change. Cumulative GHG emissions varied widely across locations, by management, and from year-to-year. Despite this high variability, maximum stover removal averaged across all sites, years, and management resulted in lower total emissions of CO2 (-12 ± 11%) and N2O (-13 ± 28%) compared to no stover removal. Decreases in total CO2 and N2O emissions in stover removal treatments were attributed to decreased availability of stover-derived C and N inputs into soils, as well as possible microclimatic differences. Soils at all sites were CH4 neutral or small CH4 sinks. Exceptions to these trends occurred for all GHGs, highlighting the importance of site-specific management and environmental conditions on GHG fluxes in agricultural soils.

Data and Resources

Field Value
accessLevel public
bureauCode {005:18}
catalog_@context https://project-open-data.cio.gov/v1.1/schema/catalog.jsonld
catalog_conformsTo https://project-open-data.cio.gov/v1.1/schema
catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
identifier 2c6469e5-1c25-468f-8e4c-604eb05e5386
license https://creativecommons.org/publicdomain/zero/1.0/
modified 2021-12-30
old-spatial {"type":"Polygon","coordinates":[[[-86.999093,40.472792],[-86.997227,40.472792],[-86.997227,40.472509],[-86.999093,40.472509]]]}
programCode {005:040}
publisher Agricultural Research Service
resource-type Dataset
source_datajson_identifier true
source_hash 810fc2dd3de25062366b4d1244ac7e8ec0182c0c
source_schema_version 1.1
spatial {"type":"Polygon","coordinates":[[[-86.999093,40.472792],[-86.997227,40.472792],[-86.997227,40.472509],[-86.999093,40.472509]]]}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • amerigeo
  • amerigeoss
  • bioenergy
  • carbon-dioxide
  • ckan
  • climate-change
  • corn
  • environment
  • farming
  • feedstocks
  • geo
  • geoss
  • greenhouse-gases
  • irrigation
  • methane
  • national
  • nitrous-oxide
  • north-america
  • np211
  • np212
  • soil
  • tillage
  • united-states
  • wind
isopen True
license_id cc-zero
license_title Creative Commons CCZero
license_url http://www.opendefinition.org/licenses/cc-zero
maintainer Huang, Chihua
maintainer_email chi-hua.huang@ars.usda.gov
metadata_created 2025-11-21T16:22:00.258811
metadata_modified 2025-11-21T16:22:00.258815
notes <p>REAP Study for Resilient Economic Agricultural Practices in West Lafayette, Indiana<br /> Corn stover is an important livestock feed and will probably be a major source of renewable bioenergy, especially in the U.S. Corn Belt. Overly aggressive removal of stover, however, could lead to greater soil erosion and hurt producer yields in the long-run. Good residue management practices could help prevent erosion of valuable topsoil by wind and water while still providing a revenue source for producers, either as livestock feed or for use in renewable bioenergy. Plant residues also contribute to soil structure, nutrient cycling, and help sustain the soil microbiota. Good residue management could also help control the loss of greenhouse gases from agricultural soils that could add to already increasing levels of atmospheric greenhouse gases contributing to global climate change. Cumulative GHG emissions varied widely across locations, by management, and from year-to-year. Despite this high variability, maximum stover removal averaged across all sites, years, and management resulted in lower total emissions of CO2 (-12 ± 11%) and N2O (-13 ± 28%) compared to no stover removal. Decreases in total CO2 and N2O emissions in stover removal treatments were attributed to decreased availability of stover-derived C and N inputs into soils, as well as possible microclimatic differences. Soils at all sites were CH4 neutral or small CH4 sinks. Exceptions to these trends occurred for all GHGs, highlighting the importance of site-specific management and environmental conditions on GHG fluxes in agricultural soils.</p>
num_resources 1
num_tags 24
title REAP Study for Resilient Economic Agricultural Practices in West Lafayette, Indiana