Articles | Volume 9, issue 10
https://doi.org/10.5194/bg-9-4087-2012
https://doi.org/10.5194/bg-9-4087-2012
Research article
 | 
23 Oct 2012
Research article |  | 23 Oct 2012

The role of alkalinity generation in controlling the fluxes of CO2 during exposure and inundation on tidal flats

P. A. Faber, A. J. Kessler, J. K. Bull, I. D. McKelvie, F. J. R. Meysman, and P. L. M. Cook

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Cited articles

Abril, G., Nogueira, M., Etcheber, H., Cabecadas, G., Lemaire, E., and Brogueira, M.: Behaviour of organic carbon in nine contrasting european estuaries, Estuarine, Coast. Shelf Sci., 54, 241–262, 2002.
Almgren, T., Dyrssen, D., and Fonselius, S.: Determination of alkalinity and total carbonate, in: Methods of seawater analysis, edited by: Grasshoff, K., Ehrhardt, M., and Kremling, K., Springer-Verlag, Chemie, Weinheim, 99–123, 1983.
Alongi, D., Tirendi, F., Dixon, P., Trott, L., and Brunskill, G.: Mineralization of organic matter in intertidal sediments of a tropical semi-enclosed delta, Estuar. Coast. Shelf S., 48, 451–467, 1999.
Asselman, N. E. M., Middelkoop, H., and Van Dijk, P. M.: The impact of changes in climate and land use on soil erosion, transport and deposition of suspended sediment in the river rhine, Hydrol. Process., 17, 3225–3244, 2003.
Berner, R. A., Scott, M. R., and Thomlinson, C.: Carbonate alkalinity in the pore waters of anoxic marine sediments, Limnol. Oceanogr., 15, 544–549, 1970.
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