Isotopologue ratios of N2O and N-2 measurements underpin the importance of denitrification in differently N-loaded riparian alder forests - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement Accéder directement au contenu
Article Dans Une Revue Environmental Science and Technology Année : 2014

Isotopologue ratios of N2O and N-2 measurements underpin the importance of denitrification in differently N-loaded riparian alder forests

Résumé

Known as biogeochemical hotspots in landscapes, riparian buffer zones exhibit considerable potential concerning mitigation of groundwater contaminants such as nitrate, but may in return enhance the risk for indirect N2O emission. Here we aim to assess and to compare two riparian gray alder forests in terms of gaseous N2O and N-2 fluxes and dissolved N2O, N-2, and NO3(-) in the near-surface groundwater. We further determine for the first time isotopologue ratios of N2O dissolved in the riparian groundwater in order to support our assumption that it mainly originated from denitrification. The study sites, both situated in Estonia, northeastern Europe, receive contrasting N loads from adjacent uphill arable land. Whereas N2O emissions were rather small at both sites, average gaseous N-2-to-N2O ratios inferred from closed-chamber measurements and HeO laboratory incubations were almost four times smaller for the heavily loaded site. In contrast, groundwater parameters were less variable among sites and between landscape positions. Campaign-based average N-15 site preferences of N2O (SP) in riparian groundwater ranged between 11 and 44. Besides the strong prevalence of N-2 emission over N2O fluxes and the correlation pattern between isotopologue and water quality data, this comparatively large range highlights the importance of denitrification and N2O reduction in both riparian gray alder stands.
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Dates et versions

hal-02600786 , version 1 (16-05-2020)

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Ülo Mander, R. Well, D. Weymann, K. Soosaar, M. Maddison, et al.. Isotopologue ratios of N2O and N-2 measurements underpin the importance of denitrification in differently N-loaded riparian alder forests. Environmental Science and Technology, 2014, 48 (20), pp.11910-11918. ⟨10.1021/es501727h⟩. ⟨hal-02600786⟩

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