Carbon loss by water erosion in drylands: implications from a study of vegetation change in the south-west USA
Author:
Affiliation:
1. Department of Geography; University of Exeter; Amory Building Rennes Drive Exeter EX4 4RJ UK
2. Department of Geography; Durham University; Durham County Durham UK
3. Institute of Bio and Geosciences - Agrosphere (IBG-3); Jülich Germany
Publisher
Wiley
Subject
Water Science and Technology
Reference49 articles.
1. Effects of vegetation change on interrill runoff and erosion;Abrahams;Southern Arizona, Geomorphology,1995
2. Net changes in regional woody vegetation cover and carbon storage in Texas drylands, 1937-1999;Asner;Global Change Biology,2003
3. Impacts of biological soil crust disturbance and composition on C and N loss from water erosion;Barger;Biogeochemistry,2006
4. Landscape patterns of vegetation change indicated by soil carbon isotope composition;Biedenbender;Geoderma,2004
5. δ13C values of soil organic matter and their use in documenting vegetation change in subtropical savannah ecosystems;Boutton;Geoderma,1998
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