Articles | Volume 1, issue 1
https://doi.org/10.5194/soil-1-187-2015
Special issue:
https://doi.org/10.5194/soil-1-187-2015
Review article
 | 
20 Feb 2015
Review article |  | 20 Feb 2015

Eddy covariance for quantifying trace gas fluxes from soils

W. Eugster and L. Merbold

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Cited articles

Acevedo, O. C., Moraes, O. L. L., Degrazia, G. A., Fitzjerrald, D. R., Manzi, A. O., and Campos, J. G.: Is friction velocity the most appropriate scale for correcting nocturnal carbon dioxide fluxes?, Agr. Forest Meteorol., 149, 1–10, 2009.
Alberto, M. C. R., Wassmann, R., Hirano, T., Miyata, A., Kumar, A., Padre, A., and Amante, M.: CO2/heat fluxes in rice fields: Comparative assessment of flooded and non-flooded fields in the Philippines, Agr. Forest Meteorol., 149, 1737–1750, 2009.
Amiro, B. D.: Paired-tower measurements of carbon and energy fluxes following disturbance in the boreal forest, Global Change Biol., 7, 253–268, 2001.
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Ammann, C., Spirig, C., Leifeld, J., and Neftel, A.: Assessment of the nitrogen and carbon budget of two managed temperate grassland fields, Agr. Ecosyst. Environ. 133, 150–162, https://doi.org/10.1016/j.agee.2009.05.006, 2009.
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Short summary
The eddy covariance (EC) method has become increasingly popular in soil science. The basic concept of this method and its use in different types of experimental designs in the field are given, and we indicate where progress in advancing and extending the field of applications is made. The greatest strengths of EC measurements in soil science are (1) their uninterrupted continuous measurement of gas concentrations and fluxes and (2) spatial integration over small-scale heterogeneity in the soil.
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