Articles | Volume 16, issue 13
https://doi.org/10.5194/bg-16-2573-2019
https://doi.org/10.5194/bg-16-2573-2019
Research article
 | 
04 Jul 2019
Research article |  | 04 Jul 2019

Shifting mineral and redox controls on carbon cycling in seasonally flooded mineral soils

Rachelle E. LaCroix, Malak M. Tfaily, Menli McCreight, Morris E. Jones, Lesley Spokas, and Marco Keiluweit

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Cited articles

ASRIS: Australian Soil Resource Information System, available at: http://www.asris.csiro.au, last access: September 2016. 
Barcellos, D., O'Connell, C., Silver, W., Meile, C., and Thompson, A.: Hot Spots and Hot Moments of Soil Moisture Explain Fluctuations in Iron and Carbon Cycling in a Humid Tropical Forest Soil, Soil Systems, 2, 59, https://doi.org/10.3390/soilsystems2040059, 2018. 
Bates, D., Maechler, M., Bolker, B., Walker, S., Bojesen, R. H., Singmann, H., Dai, B., Scheipl, F., Grothendieck, G., and Green, P.: lme4: Fitting Linear Mixed-effects Models Using lme4, J. Stat. Softw., 67, 1–48, https://doi.org/10.18637/jss.v067.i01, 2015. 
Borggaard, O. K., Jdrgensen, S. S., Moberg, J. P., and Raben-Lange, B.: Influence of Organic Matter on Phosphate Adsorption by Aluminium and Iron Oxides in Sandy Soils, J. Soil Sci., 41, 443–449, https://doi.org/10.1111/j.1365-2389.1990.tb00078.x, 1990. 
Boye, K., Noël, V., Tfaily, M. M., Bone, S. E., Williams, K. H., Bargar, J. R., and Fendorf, S.: Thermodynamically Controlled Preservation of Organic Carbon in Floodplains, Nature Geosci., 10, 415–419, https://doi.org/10.1038/ngeo2940, 2017. 
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Short summary
Organic carbon (C) stocks within seasonal wetlands are vulnerable to increased severity and duration of droughts in response to climate change. Here we examined the mechanistic controls on C cycling in seasonally flooded mineral wetland soils. We found that different mechanisms preserve C in surface layers (oxygen limitations) compared to subsurface layers (mineral protection and lack of root C inputs).
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