{
  "@type": "dcat:Dataset",
  "accessLevel": "public",
  "accrualPeriodicity": "irregular",
  "bureauCode": [
    "005:18"
  ],
  "contactPoint": {
    "fn": "Dungan, Robert",
    "hasEmail": "mailto:robert.dungan@usda.gov"
  },
  "description": "<p>NWISRL South Farm Study for Greenhouse gas Reduction through Agricultural Carbon Enhancement network in Kimberly, Idaho\nWe report N2O emissions along with CO2 and CH4 from a silage corn (2013)–barley (2014)–alfalfa (2015) rotation under conventional tillage and sprinkler irrigation. The main study objectives were to evaluate the effectiveness of an enhanced-efficiency fertilizer (SuperU; stabilized granular urea with urease and nitrification inhibitors) to reduce N2O emissions when compared to granular urea, and determine GHG emissions from fall-applied dairy manure or composted dairy manure and spring-applied dairy manure. Nitrogen treatments were only applied during the first two years of the study. Compared to urea, SuperU plots emitted 53% less N2O during the monitoring period with corn, while no N2O emission reductions occurred in 2014 with barley. The N2O-N emission losses as a percentage of total N applied were 0.21% and 0.04% for urea and SuperU in 2013, respectively, with losses of 0.05% from both urea fertilizers in 2014. On average, N2O fluxes from fall and spring manure were statistically similar and greater than the other N treatments in 2014, and there was a lasting manure treatment effect on emissions when under alfalfa. Carbon dioxide fluxes, on average, were greatest from fall- and spring-applied manure during the first two years of study. Methane fluxes were negative on average, indicating microbial oxidation, and no differences occurred among the N treatments. Silage corn, barley grain, and alfalfa yields were statistically similar among all N treatments. This work demonstrates that SuperU can potentially reduce N2O emissions from irrigated cropping systems in the semiarid western United States while not affecting crop yields.</p> <div><br>Resources in this dataset:</div><br><ul><li><p>Resource Title: Kimberly, ID NWISRL South Farm Study (IDKM) CSV data.</p> <p>File Name: IDKM_csv_data.zip</p><p>Resource Description: CSV format data on Experimental Units, Field Sites, Greenhouse Gas Flux, Residue Management, Soil Chemistry, Soil Physics, Amendments, Growth Stages, Planting, Tillage, Persons, Treatments, Weather Daily, Weather Station.</p></li></ul>",
  "distribution": [
    {
      "@type": "dcat:Distribution",
      "downloadURL": "https://ndownloader.figshare.com/files/44527760",
      "format": "zip",
      "mediaType": "application/zip",
      "title": "IDKM_csv_data.zip"
    }
  ],
  "identifier": "10.15482/USDA.ADC/1504011",
  "keyword": [
    "ARS",
    "Environment",
    "GRACEnet",
    "NP211",
    "NP212",
    "data.gov",
    "farming"
  ],
  "license": "https://www.usa.gov/publicdomain/label/1.0/",
  "modified": "2025-11-22",
  "programCode": [
    "005:040"
  ],
  "publisher": {
    "@type": "org:Organization",
    "name": "Agricultural Research Service"
  },
  "spatial": "{\"type\": \"Polygon\", \"coordinates\": [[[-114.371528, 42.517299], [-114.369876, 42.517299], [-114.369876, 42.516447], [-114.371528, 42.516447], [-114.371528, 42.517299]]]}",
  "temporal": "2012-10-09/2017-07-24",
  "title": "NWISRL South Farm Study for Greenhouse gas Reduction through Agricultural Carbon Enhancement network in Kimberly, Idaho"
}