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Relevancy: 100%

Site-differentiated assessment and crediting of the efficacy of nitrification inhibitors as a climate mitigation measure in crop production - TP E (Project)

Nitrous oxide emissions (N2O emissions) from agriculture are accountable for around 80% of total N2O emissions in Germany and for 45% of greenhouse gas (GHG) emissions from the agricultural sector. The largest source of N2O in agriculture is the use of nitrogen fertilisers (mineral fertilisers and organic manure also including biogas digestates), which causes ca. 60% of total N2O emissions from...


Funding period: 2022 - 2026

Relevancy: 100%

Site-differentiated assessment and crediting of the efficacy of nitrification inhibitors as a climate mitigation measure in crop production (NitriKlim) - SP F (Project)

The largest source of N2O in agriculture is the use of nitrogen fertilisers, which causes ca. 60% of total N2O emissions from agriculture. Here, both direct N2O emissions from the fertilised soils and indirect N2O emissions caused by the discharge of reactive nitrogen compounds (e.g. leaching of nitrate, emission of ammonia) are relevant. Reducing these emissions and improving the nitrogen use...


Funding period: 2022 - 2026

Relevancy: 100%

Site-differentiated assessment and crediting of the efficacy of nitrification inhibitors as a climate mitigation measure in crop production - SP G (Project)

Nitrous oxide emissions (N2O emissions) from agriculture are accountable for around 80% of total N2O emissions in Germany and for 45% of greenhouse gas (GHG) emissions from the agricultural sector. The largest source of N2O in agriculture is the use of nitrogen fertilisers (mineral fertilisers and organic manure also including biogas digestates), which causes ca. 60% of total N2O emissions from...


Funding period: 2022 - 2026

Relevancy: 100%

Environmental Issues of Nitrification Inhibitors and Urease Inhibitors on Structure and Function of the Microbial Community in Soil (Project)

The aim of this project is to investigate the effects of the application of nitrification inhibitors and urease inhibitors on the soil microbiome in quality and quantity, and to assess, if unwanted side-effects impact the ecological functioning of the soil.


Funding period: 2023 - 2024

Relevancy: 100%

Measures to reduce direct and indirect climate-relevant emissions that result from denitrification in agricultural soils - SP A (Project)

Topics addressed by our project include the lowering of nitrous oxide emissions and improvement of nitrogen use efficiency through modelling, identification of measures to lower denitrification, and site-specific assessment of denitrification. Gaseous emissions from denitrification result in crop-relevant N losses as well as direct N2O fluxes from cropping systems. Climate protection measures for...


Funding period: 2022 - 2026

Relevancy: 100%

Measures to reduce direct and indirect climate-relevant emissions that result from denitrification in agricultural soils SP B (Project)

Topics addressed by our project include the lowering of nitrous oxide emissions and improvement of nitrogen use efficiency through modelling, identification of measures to lower denitrification, and site-specific assessment of denitrification. Gaseous emissions from denitrification result in crop-relevant N losses as well as direct N2O fluxes from cropping systems. Climate protection measures for...


Funding period: 2022 - 2026

Relevancy: 100%

Measures to reduce direct and indirect climate-relevant emissions that result from denitrification in agricultural soils - SP C (Project)

Gaseous emissions from denitrification (nitrogen oxide, NO, nitrous oxide, N2O and molecular nitrogen, N2) cause crop-relevant nitrogen losses (N losses) and direct N2O emissions. The level is extremely variable and depends on climate factors, management and soil properties. Crop mitigation measures in the field of fertilisation, tillage and crop rotation have hardly been investigated with regard...


Funding period: 2022 - 2026

Relevancy: 100%

Identification of measures to reduce greenhouse gas emissions caused by denitrification of agricultural land - SP D (Project)

Main goal of the MinDen-project will be to identify practicable measures to reduce N2 and N2O emissions caused by denitrification on cropland in Germany. The knowledge of N-losses (through denitrification) shall be improved by field and labaratory studies and be used for validation and applicaton in simulation models.


Funding period: 2022 - 2026

Relevancy: 100%

Analysis and evaluation of nutritional situation and quality of nutritional care in hospitals and long-term care institutions (Project)

In the present project, the nutrition situation and nutrition care in German hospitals and long-term care facilities will be characterized using the data of the nutritionDay project from the years 2019 to 2022. The data will be compared with previous years and internationally. In a second part of the project, the quality of nutritional care in hospitals and inpatient geriatric care facilities...


Funding period: 2023 - 2024

Relevancy: 100%

Modeling of regional agricultural nitrogen fluxes as basis for the development and optimisation of agricultural policy measure to achieve climate protection goals - SP A (Project)

The overall project goal to establish a georeferenced database and the spatially differentiated, cross-media modelling of nitrogen fluxes as basis for the development and optimisation of policy measures to achieve climate protection goals in the field of agriculture. For the first time, region-specific farm and management structures and their influence on agricultural nitrogen emissions are to be...


Funding period: 2022 - 2025