Published March 19, 2019 | Version v1

On-farm study reveals positive relationship between gas transport capacity and organic carbon content in arable soil (Data set)

  • 1. Department of Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, 11824, Sweden; Department of Agroecology and Environment, Agroscope, Zurich, 8046, Switzerland
  • 2. Department of Agroecology and Environment, Agroscope, Zurich, 8046, Switzerland
  • 3. Department of Plant Production Systems, Agroscope Nyon, 1260, Switzerland; Natural Resources Institute, University of Greenwich, Chatham Maritime, ME4 4TB, UK
  • 4. Department of Agroecology and Environment, Agroscope, Zurich, 8046, Switzerland; College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510640, China
  • 5. Department of Environmental Systems Science, ETH Zurich, Zurich, 8092, Switzerland
  • 6. Department of Agroecology and Environment, Agroscope, Zurich, 8046, Switzerland; Department of Evolutionary Biology and Environmental Studies, University of Zurich, 8092, Zurich, Switzerland; Plant-Microbe Interactions, Faculty of Science, Institute of Environmental Biology, Utrecht University, 3584, Utrecht, the Netherlands
  • 7. Department of Plant Production Systems, Agroscope Nyon, 1260, Switzerland; Department of Extension, Training and Communication, Research Institute of Organic Agriculture (FiBL), 1001, Lausanne, Switzerland

Description

Data used for "On-farm study reveals positive relationship between gas transport capacity and organic carbon content in arable soil" by Colombi T, Walder F, Büchi L, Sommer M, Liu K, Six J, van der Heijden M, Charles R and Keller T. (2019). SOIL. 5, 91-105, https://doi.org/10.5194/soil-5-91-2019.

.txt file "MetaInformation_On-farm study reveals positive relationship between gas transport capacity and organic carbon content in arable soil" contains all necessary meta-information 

Files

ColombiEtAl_2019_SOIL_ExogenousCInputs.csv