CO2 concentrations and microbial biomass data derived from incubation experiments on soils collected at Arches National Park in 2017 and 2018

These data were compiled to improve our understanding of how water, carbon (C), nitrogen (N), and phosphorus (P) interact to regulate below ground carbon cycling. Objective(s) of our study were to evaluate how soil heterotrophic carbon cycling responded to inputs of water, C, N, and P individually and interactively on the Colorado Plateau. These data represent soil microbial and CO2 respiration responses to amendments of carbon, nitrogen, phosphorous, and water. Soils were collected at a study site located in Arches National Park in southeastern Utah on 14 August 2017 and again on 17 July 2018 from the upper 10 cm of the soil profile in open spaces among plant canopies after the biological soil crust layer (< 1 cm depth) was removed. These data were processed by the U.S. Geological Survey (USGS) and Utah State University in a lab at the USGS-Southwest Biological Science Center, Moab, Utah. These data can be used to assess some carbon pools, fluxes, and responses to resource additions for a dryland ecosystem.

Data and Resources

Field Value
accessLevel public
bureauCode {010:12}
catalog_@context https://project-open-data.cio.gov/v1.1/schema/catalog.jsonld
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catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
identifier USGS:61956c63d34eb622f6909379
metadata_type geospatial
modified 20211124
old-spatial -109.714, 38.603, -109.481, 38.848
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
source_datajson_identifier true
source_hash 8852baaad68fa15f838ace90a9c526d7cc5f351f
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-109.714, 38.603], [-109.714, 38.848], [ -109.481, 38.848], [ -109.481, 38.603], [-109.714, 38.603]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • amerigeo
  • amerigeoss
  • arches-national-park
  • biogeochemical-cycling
  • biological-soil-crusts
  • biota
  • carbon
  • carbon-cycling
  • carbon-dioxide
  • carbon-flux
  • ckan
  • climate-change
  • co2-respiration
  • colorado-plateau
  • data-release
  • dryland-ecosystem
  • geo
  • geoscientificinformation
  • geoss
  • heterotrophic-soil-respiration
  • laboratory-experiments
  • microbial-biomass
  • moab
  • national
  • nitrogen
  • north-america
  • nutrients
  • phosphorus
  • resource-limitation
  • soil-efflux
  • soil-incubation-experiments
  • soil-profile
  • soil-resources
  • soil-respiration
  • southeastern-utah
  • stoichiometry
  • terrestrial-ecosystems
  • united-states
  • usgs-61956c63d34eb622f6909379
  • utah
  • water
isopen False
license_id notspecified
license_title License not specified
maintainer Sasha C Reed
maintainer_email screed@usgs.gov
metadata_created 2025-11-22T01:37:30.902892
metadata_modified 2025-11-22T01:37:30.902896
notes These data were compiled to improve our understanding of how water, carbon (C), nitrogen (N), and phosphorus (P) interact to regulate below ground carbon cycling. Objective(s) of our study were to evaluate how soil heterotrophic carbon cycling responded to inputs of water, C, N, and P individually and interactively on the Colorado Plateau. These data represent soil microbial and CO2 respiration responses to amendments of carbon, nitrogen, phosphorous, and water. Soils were collected at a study site located in Arches National Park in southeastern Utah on 14 August 2017 and again on 17 July 2018 from the upper 10 cm of the soil profile in open spaces among plant canopies after the biological soil crust layer (&lt; 1 cm depth) was removed. These data were processed by the U.S. Geological Survey (USGS) and Utah State University in a lab at the USGS-Southwest Biological Science Center, Moab, Utah. These data can be used to assess some carbon pools, fluxes, and responses to resource additions for a dryland ecosystem.
num_resources 2
num_tags 41
title CO2 concentrations and microbial biomass data derived from incubation experiments on soils collected at Arches National Park in 2017 and 2018