Journal Article
Nitrification inhibitors reduce N2O emissions induced by application of biogas digestate to oilseed rape
Katharina Kesenheimer; Jürgen Augustin; Hannes Hegewald; Sarah Köbke; Klaus Dittert; Thomas Räbiger; Teresa Suárez Quiñones; Annette Prochnow; Jens Hartung; Roland Fuß; Heinz Stichnothe; Heinz Flessa; Reiner Ruser
Nutrient Cycling in Agroecosystems · Vol. 120, Issue 1 · pp. 99-118 · 2021
Abstract
Winter oilseed rape (WOSR) is the major oil crop cultivated in Europe and the most important feedstock for biodiesel. Up to 90% of the greenhouse gas (GHG) emissions from biodiesel production can occur during oilseed rape cultivation. Therefore, mitigation strategies are required and need to focus on direct nitrous oxide (N 2 O) emission as one of the largest GHG contributors in biodiesel production. Earlier studies show that nitrification inhibitors (NIs) can reduce N 2 O emissions derived from N-fertilization. Since information on the effect of biogas digestates with or without NIs on N 2 O emissions from WOSR fields is scarce, the aim of this study was to evaluate their effects on N 2 O emissions, mineral N dynamics, and oil yield in WOSR production fertilized with digestate. The study was conducted at five sites across Germany over three years resulting in 15 full site-years data sets. Across all sites and years, N 2 O emission from WOSR fertilized with biogas digestate (180 kg NH 4 + -N ha −1 yr −1 ) ranged between 0.2 and 3.5 kg N 2 O–N ha −1 yr −1 . Due to the reduction of the nitrate concentrations following digestate application, application of NI significantly reduced annual N 2 O emission by 36%. Our results demonstrate that NI can be an effective measure for reducing N 2 O emissions from digestate application, but its effectiveness depends on soil and weather conditions, and ultimately on the site-specific potential for N 2 O production and release. There was no effect of NI application on grain and oil yield.