Articles | Volume 9, issue 3
https://doi.org/10.5194/bg-9-1099-2012
https://doi.org/10.5194/bg-9-1099-2012
Research article
 | 
27 Mar 2012
Research article |  | 27 Mar 2012

Erosion, deposition and replacement of soil organic carbon in Mediterranean catchments: a geomorphological, isotopic and land use change approach

E. Nadeu, A. A. Berhe, J. de Vente, and C. Boix-Fayos

Related subject area

Biogeochemistry: Sediment
Deposit-feeding of Nonionellina labradorica (foraminifera) from an Arctic methane seep site and possible association with a methanotroph
Christiane Schmidt, Emmanuelle Geslin, Joan M. Bernhard, Charlotte LeKieffre, Mette Marianne Svenning, Helene Roberge, Magali Schweizer, and Giuliana Panieri
Biogeosciences, 19, 3897–3909, https://doi.org/10.5194/bg-19-3897-2022,https://doi.org/10.5194/bg-19-3897-2022, 2022
Short summary
Benthic silicon cycling in the Arctic Barents Sea: a reaction–transport model study
James P. J. Ward, Katharine R. Hendry, Sandra Arndt, Johan C. Faust, Felipe S. Freitas, Sian F. Henley, Jeffrey W. Krause, Christian März, Allyson C. Tessin, and Ruth L. Airs
Biogeosciences, 19, 3445–3467, https://doi.org/10.5194/bg-19-3445-2022,https://doi.org/10.5194/bg-19-3445-2022, 2022
Short summary
Long-term incubations provide insight into the mechanisms of anaerobic oxidation of methane in methanogenic lake sediments
Hanni Vigderovich, Werner Eckert, Michal Elul, Maxim Rubin-Blum, Marcus Elvert, and Orit Sivan
Biogeosciences, 19, 2313–2331, https://doi.org/10.5194/bg-19-2313-2022,https://doi.org/10.5194/bg-19-2313-2022, 2022
Short summary
Ideas and perspectives: Sea-level change, anaerobic methane oxidation, and the glacial–interglacial phosphorus cycle
Bjorn Sundby, Pierre Anschutz, Pascal Lecroart, and Alfonso Mucci
Biogeosciences, 19, 1421–1434, https://doi.org/10.5194/bg-19-1421-2022,https://doi.org/10.5194/bg-19-1421-2022, 2022
Short summary
Estimation of the natural background of phosphate in a lowland river using tidal marsh sediment cores
Florian Lauryssen, Philippe Crombé, Tom Maris, Elliot Van Maldegem, Marijn Van de Broek, Stijn Temmerman, and Erik Smolders
Biogeosciences, 19, 763–776, https://doi.org/10.5194/bg-19-763-2022,https://doi.org/10.5194/bg-19-763-2022, 2022
Short summary

Cited articles

Alewell, C., Meusburger, K., Brodbeck, M., and Bänninger, D.: Methods to describe and predict soil erosion in mountain regions, Landscape Urban Plan., 88, 46–53, 2008.
Alin, S. R., Aalto, R., Goni, M. A., Richey, J. E., and Dietrich, W. E.: Biogeochemical characterization of carbon sources in the Strickland and Fly rivers, Papua New Guinea, J. Geophys. Res-Earth., 113, F01S05, https://doi.org/10.1029/2006jf000625, 2008.
Avnimelech, Y. and McHenry, J. R.: Enrichment of transported sediments with organic carbon, nutrients and clay, Soil Sci. Soc. Am. J., 48, 259–266, 1984.
Berhe, A. A.: Decomposition of organic substrates at eroding vs. depositional landform positions, Plant Soil, 350, 261–280, 2012.
Berhe, A. A., Harte, J., Harden, J. W., and Torn, M. S.: The significance of the erosion-induced terrestrial carbon sink, BioScience, 57, 337–346, 2007.
Download
Altmetrics
Final-revised paper
Preprint