Solution Center for Nutrient Management
Solution Center for Nutrient Management
Solution Center for Nutrient Management
University of California
Solution Center for Nutrient Management

Nutrient Management Research Database

General Information

Research Title

Impact of biochar application to a Mediterranean wheat crop on soil microbial activity and greenhouse gas fluxes

Research Specifications

Crop: Wheat
Soil Type: silty loam
Country: Italy
Year: 2011

Authors

S. Castaldia, M. Riondinoa, S. Barontib, F.R. Espositoa, R. Marzaiolia, F.A. Rutiglianoa, F.P. Vaccarib, and F. Migliettab

Summary/Abstract from Original Source

Biochar has been recently proposed as a management strategy to improve crop productivity and global warming mitigation. However, the effect of such approach on soil greenhouse gas fluxes is highly uncertain and few data from field experiments are available. In a field trial, cultivated with wheat, biochar was added to the soil (3 or 6 kg m−2) in two growing seasons (2008/2009 and 2009/2010) so to monitor the effect of treatments on microbial parameters 3 months and 14 months after char addition. N2O, CH4 and CO2 fluxes were measured in the field during the first year after char addition. Biochar incorporation into the soil increased soil pH (from 5.2 to 6.7) and the rates of net N mineralization, soil microbial respiration and denitrification activity in the first 3 months, but after 14 months treated and control plots did not differ significantly. No changes in total microbial biomass and net nitrification rate were observed. In char treated plots, soil N2O fluxes were from 26% to 79% lower than N2O fluxes in control plots, excluding four sampling dates after the last fertilization with urea, when N2O emissions were higher in char treated plots. However, due to the high spatial variability, the observed differences were rarely significant. No significant differences of CH4 fluxes and field soil respiration were observed among different treatments, with just few exceptions. Overall the char treatments showed a minimal impact on microbial parameters and GHG fluxes over the first 14 months after biochar incorporation.

Research Highlights

Design and Methods

  • Wheat was grown on soil amended with either 13 or 26 tons/ac of woodchip derived biochar.
  • Nitrous oxide emissions were measured along with soil N levels.

Results

  • While yields were increased by 30%, no effect on N2O emissions was observed.
  • The biochar amended plots showed changes in soil respiration, mineralization, and denitrifier activity 3 months after application, but those effects dissipated by 14 months.

Additional Information

Tags (links to other subject matter in database)

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