Published 2002 | Version v1
Journal article

Developing an inventory of N2O emissions from British soils

  • 1. Edinburgh Univ. (United Kingdom). Dept. of Geography
  • 2. Centre for Ecology and Hydrology, Penicuik (United Kingdom)

Description

A spatial inventory of N2O emissions from agricultural and non-agricultural soils in Great Britain was prepared using a simple regression model within a GIS framework. The regression model was based on published N2O data from soils of temperate climates. It describes emissions as a function of N input (N), water filled pore space (WFPS), soil temperature (Ts) and land use (A): ln(N2O)(kg Nha-1y-1)=2.7+0.60lnN(kg Nha-1y-1)+0.61lnWFPS(%)+0.035Ts(oC)0.99A. The regression model predicted the highest fluxes of 6-21 kg Nha-1y-1 from grazed grasslands. On tilled land, predicted N2O emissions did not exceed 6 kg Nha-1y-1, while fluxes below 0.1 kg Nha-1y-1 were estimated for semi-natural land. N2O emissions from soils in spring and summer were a factor of 2-3 higher than in the remaining part of the year. Total N2O emissions for Great Britain were estimated at 127kt N2O-Ny-1. Distribution maps of annual and seasonal N2O emissions outlined the areas with the largest fluxes as those of intensive livestock farming in wet western regions of Britain. The annual emissions predicted by this study were much higher for agricultural soils than those suggested by the IPCC emission factor of 1.25% (0.25-2.25%) of N input, which range between 3 and 9kg kg Nha-1y-1 for grasslands and 2 and 3kg Nha-1y-1 for tillage crops and predict a total emission from agricultural sources of 56kt N2O-Ny-1. Main uncertainty of the linear regression model is caused by scaling from published short-term N2O emission data to annual averages. (Author)

Additional details

Publishing Information

Journal Title
Atmospheric Environment (1994)
Journal Volume
36
Journal Issue
6
Journal Page Range
p. 987-998
ISSN
1352-2310
CODEN
AENVEQ