Fire is a major factor controlling global carbon (C) and nitrogen (N) cycling. While direct C and N losses caused by combustion have been comparably well established, important knowledge gaps remain on postfire N losses. Here, we quantified both direct C and N combustion losses as well as postfir...
Dannenmann, M.
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Díaz Pinés, Eugenio
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Kitzler, B.
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Karhu, K.
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Tejedor, J.
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Ambus, P.
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Parra, A.
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Sánchez Martin, L.
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Resco, V.
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Ramírez, D.
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Povoas‐Guimaraes, L.
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Willibald, G.
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Gasche, R.
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Zechmeister-Boltenstern, S.
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Kraus, David
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Castaldi, S.
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Vallejo, A.
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Rubio, A.
,
Rubio, J.M.
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Butterbach-Bahl, Klaus
,
[Postfire nitrogen balance of Mediterranean shrublands: Direct combustion losses versus gaseous and leaching losses from the postfire soil mineral nitrogen flush.]
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Postfire nitrogen balance of Mediterranean shrublands: Direct combustion losses versus gaseous and leaching losses from the postfire soil mineral nitrogen flush.
Soils are a significant source for the secondary greenhouse gas NO and assumed to be a significant source of tropospheric NOx in rural areas. Here we tested the LandscapeDNDC model for its capability to simulate magnitudes and dynamics of soil NO emissions for 22 sites differing in land use (arab...
Molina-Herrera, S.
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Haas, E.
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Grote, R.
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Kiese, Ralf
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Klatt, Steffen
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Kraus, David
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Kampffmeyer, t.
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Friedrich, R.
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Andreae, H.
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Loubet, B.
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Ammann, C.
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Horváth, L.
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Larsen, K.
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Gruening, C.
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Frumau, A.
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Butterbach-Bahl, Klaus
,
[Importance of soil NO emissions for the total atmospheric NOx budget of Saxony, Germany]
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Importance of soil NO emissions for the total atmospheric NOx budget of Saxony, Germany
Agriculture has been recognized as a major anthropogenic source of surplus loads of nitrogen in the environment. Losses of nitrate via subsurface pathways are severely threatening groundwater and surface waters. This study explored the capability of a coupled hydro-biogeochemical spatially explic...
Klatt, Steffen
,
Kraus, David
,
Kraft, P.
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Breuer, L.
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Wlotzka, M.
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Heuveline, V.
,
Haas, E.
,
Kiese, Ralf
,
Butterbach-Bahl, Klaus
,
[Exploring impacts of vegetated buffer strips on nitrogen cycling using a spatially explicit hydro-biogeochemical modeling approach]
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Exploring impacts of vegetated buffer strips on nitrogen cycling using a spatially explicit hydro-biogeochemical modeling approach