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Bringing nature into the city
We aim for maximum biodiversity on and around our building. But what can we do to increase it? -
NIOO Thema Biodiversiteit
Het NIOO doet op alle niveaus onderzoek aan de biodiversiteit. Kleine en grote organismen, van genetische diversiteit tot de diversiteit van soorten en zowel op het land als in het water. Met de uitkomsten van ons onderzoek kunnen we de biodiversiteit in Nederland en daarbuiten beter beschermen. -
Multifunctioneel terrein
Naast zonnepanelen, helofytenfilters en andere ecotechnologie hebben we ook kassen, volières en vijvers. -
Haal de natuur de stad in!
Wat kunnen we allemaal doen om maximale biodiversiteit op het terrein te krijgen? -
King Willem-Alexander to visit NIOO on 6 July
On 6 July, His Majesty King Willem-Alexander will pay a working visit to the Netherlands Institute of Ecology (NIOO-KNAW) in Wageningen. -
Koning bezoekt NIOO op 6 juli
Zijne Majesteit Koning Willem-Alexander brengt op woensdagmiddag 6 juli een werkbezoek aan het Nederlands Instituut voor Ecologie (NIOO-KNAW) in Wageningen. -
Gulden sleutelbloemen tellen als graadmeter voor gezonde natuur
02/05/2022 Vorig jaar zijn er in heel Europa bijna 400.000 gulden sleutelbloemen gecheckt. Ook in het voorjaar van 2022 kunnen vrijwilligers weer helpen tellen. -
Microbial Networks controlling soil greenhouse gases emissions
Soils are considered principally non-renewable resources. Soil ecosystem services have a large impact on numerous societal demands and are of high economic importance. Within the area of sustainable agriculture, it is expected that agricultural production will increasingly rely on the natural nutrient retention and recycling capabilities of soil. This project seeks to provide a fundamental scientific understanding of soil functioning and the resulting ecosystem services in Brazilian and Dutch bio-economies based on innovative microbial ecology and soil science studies. Focus is in sugarcane crop production systems by linking soil microbial composition and functioning, waste residues recycling, fertilizers, soil factors and greenhouse gases (GHG) emissions through integrating and complementing the strong expertise of Brazilian and Dutch researchers from different areas of agronomy, soil sciences, plant nutrition, biogeochemistry, soil ecology, microbial ecology, ecological genomics, molecular ecology and bioinformatics. We will quantify the microbial functional groups and microbial abundance of C and N cycle genes and measure GHG emissions (CO2, CH4 and N2O) from soils during the productive cycle of the plant under different management practices and verify the temporal and spatial variability of these emissions in the evaluated treatments with different concentrations of sugarcane vinasse residue combined with N mineral fertilizers in combination with straw additions, and determine the conditions under which such GHG emissions can be counteracted, or minimized most. The proposed project will enhance fundamental scientific understanding of the interactive role of the microbial networks operating in soil and the consequences of bio-based agricultural management practices for the functioning of soil systems. -
NIOO Theme Biodiversity
In order to protect, or restore biodiversity, it is crucial to consider all forms of life within their entire context. The strength of NIOO-based research is that it integrates all of the different levels and scales that make up biodiversity, from genetic diversity to species diversity, from small to large organisms, from trophic interactions to communities and ecosystems, and in a wide range of terrestrial and aquatic habitats. Therefore, NIOO is in the right position to make a substantial and scientifically important contribution to the societal goal of the SDGs. -
Common insecticide linked to extreme decline in freshwater insects
Thiacloprid, a widely-used pesticide, can cause a large-scale decline in freshwater insects. This was discovered by a team of researchers from Leiden University, including current NIOO-director Geert de Snoo.