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Plant and Soil | 2002

Short term effect of ploughing a permanent pasture on N2O production from nitrification and denitrification

José María Estavillo; P. Merino; M. Pinto; Sirwan Yamulki; Gerhard Gebauer; A. Sapek; W.J. Corré

Soils are an important source of N2O, which can be produced both in the nitrification and the denitrification processes. Grassland soils in particular have a high potential for mineralization and subsequent nitrification and denitrification. When ploughing long term grassland soils, the resulting high supply of mineral N may provide a high potential for N2O losses. In this work, the short-term effect of ploughing a permanent grassland soil on gaseous N production was studied at different soil depths. Fertiliser and irrigation were applied in order to observe the effect of ploughing under a range of conditions. The relative proportions of N2O produced from nitrification and denitrification and the proportion of N2 gas produced from denitrification were determined using the methyl fluoride and acetylene specific inhibitors. Irrespectively to ploughing, fertiliser application increased the rates of N2O production, N2O production from nitrification, N2O production from denitrification and total denitrification (N2O + N2). Application of fertiliser also increased the denitrification N2O/N2 ratio both in the denitrification potential and in the gaseous N productions by denitrification. Ploughing promoted soil organic N mineralization which led to an increase in the rates of N2O production, N2O production from nitrification, N2O production from denitrification and total denitrification (N2O + N2). In both the ploughed and unploughed treatments the 0–10 cm soil layer was the major contributing layer to gaseous N production by all the above processes. However, the contribution of this layer decreased by ploughing, gaseous N productions from the 10 to 30 cm layer being significantly increased with respect to the unploughed treatment. Ploughing promoted both nitrification and denitrification derived N2O production, although a higher proportion of N2O lost by denitrification was observed as WFPS increased. Recently ploughed plots showed lower denitrification derived N2O percentages than those ploughed before as a result of the lower soil water content in the former plots. Similarly, a lower mean nitrification derived N2O percentage was found in the 10–30 cm layer compared with the 0–10 cm.


Journal of Environmental Quality | 2000

Temporal stability of spatial patterns of nitrous oxide fluxes from sloping grassland.

G.L. Velthof; J.W. van Groenigen; Gerhard Gebauer; Stefan Pietrzak; S. C. Jarvis; M. Pinto; W.J. Corré; O. Oenema


Njas-wageningen Journal of Life Sciences | 2014

Nitrate leaching and apparent recovery of urine-N in grassland on sandy soils in the Netherlands

W.J. Corré; C.L. van Beek; J. W. van Groenigen


Archive | 2006

Lot van urine-N

J.W. (Jan Willem) van Groenigen; W.J. Corré


Archive | 2006

The fate of urine-N

J.W. (Jan Willem) van Groenigen; W.J. Corré


Archive | 2006

Informatieblad Mineralen en Milieukwaliteit : Verdeling van verliesroutes van N uit urineplekken

C.L. Beek; J.W. van Groenigen; W.J. Corré


Journal of Lipid Research | 2006

Apparent recovery of urine-N in grassland on sandy soils

W.J. Corré; J.W. van Groenigen; C.L. Beek


Book of Abstracts: 14th N-workshop, Maastricht, the Netherlands, 24-26 October 2005 | 2005

Nitrogen utilisation and leaching from urine patches on sandy soils

W.J. Corré; J.W. van Groenigen; C.L. Beek


6th Benelux IRMS user group meeting; programme and abstracts, Gent Belgium, 10-03-2005 | 2005

Seasonal differences in nitrogenous losses from 15N-labeled urine patches in pastures

C.L. Beek; W.J. Corré; G.F. Koopmans; P.J. Kuikman; J.W. van Groenigen


14th N-Workshop. Book of Abstracts, Wageningen, 24-26 October 2005 | 2005

Nitrogen loss pathways from urine patches in relation to timing of applications; results of literature review, lysimeter experiments and field experiments

J.W. van Groenigen; C.L. Beek; E.W.J. Hummelink; G.F. Koopmans; W.J. Corré

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G.F. Koopmans

Wageningen University and Research Centre

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C.L. van Beek

Wageningen University and Research Centre

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E.W.J. Hummelink

Wageningen University and Research Centre

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G.L. Velthof

Wageningen University and Research Centre

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J. W. van Groenigen

Wageningen University and Research Centre

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O. Oenema

Wageningen University and Research Centre

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P.J. Kuikman

Wageningen University and Research Centre

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A. Sapek

University of Bayreuth

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