Articles | Volume 15, issue 3
https://doi.org/10.5194/bg-15-821-2018
https://doi.org/10.5194/bg-15-821-2018
Research article
 | 
09 Feb 2018
Research article |  | 09 Feb 2018

Wet–dry cycles impact DOM retention in subsurface soils

Yaniv Olshansky, Robert A. Root, and Jon Chorover

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Cited articles

Abdulla, H. A. N., Minor, E. C., Dias, R. F., and Hatcher, P. G.: Changes in the compound classes of dissolved organic matter along an estuarine transect: A study using FTIR and 13C NMR, Geochim. Cosmochim. Acta, 74, 3815–3838, 2010.
Blagodatsky, S., Blagodatskaya, E., Yuyukina, T., and Kuzyakov, Y.: Model of apparent and real priming effects: Linking microbial activity with soil organic matter decomposition, Soil Biol. Biochem., 42, 1275–1283, 2010.
Chen, C., Dynes, J. J., Wang, J., and Sparks, D. L.: Properties of Fe-Organic Matter Associations via Coprecipitation versus Adsorption, Environ. Sci. Technol., 48, 13751–13759, 2014a.
Chen, C., Dynes, J. J., Wang, J., Karunakaran, C., and Sparks, D. L.: Soft X-ray spectromicroscopy study of mineral-organic matter associations in pasture soil clay fractions, Environ. Sci. Technol., 48, 6678–6686, 2014b.
Chorover, J. and Amistadi, M. K.: Reaction of forest floor organic matter at goethite, birnessite and smectite surfaces, Geochim. Cosmochim. Acta, 65, 95–109, 2001.
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Short summary
Dissolved organic matter (DOM) fate in soils can be impacted by frequent wet–dry cycles that occur in the subsoil environment. This study provides direct evidence that wet–dry cycles altered both composition and spatial distribution of organic carbon on a complex soil matrix. Therefore transformation of soils with a wet environment to higher fluctuation in soil moisture, as predicted by climate models, may alter the interactions between DOM and soil surfaces.
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