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Impact of nutrients
Nutrient availability in natural ecosystems has increased due to anthropogenic activities like spill-over from agricultural ecosystems. In the Netherlands, this has led to the acidification of natural areas for example. At NIOO, we aim to understand the impact of nutrients on natural systems in more detail, to help to bring back the balance. -
Wim van der Putten and Jos Raaijmakers named 'Highly Cited Researcher' for sixth year running
Clarivate Analytics has published its annual list of highly cited researchers. NIOO-researchers Jos Raaijmakers and Wim van der Putten are included for the sixth year running. -
Inaugural lecture by Dedmer van de Waal
Op donderdag 6 juli houdt Dedmer van de Waal zijn oratie als bijzonder hoogleraar Aquatische Functionele Ecologie aan de Universiteit van Amsterdam. -
Forest soil boost for iconic Dutch national park
A major NIOO-supervised experiment is underway in one of the Netherlands most iconic nature areas, with a key role for the soil. -
Wim van der Putten and Jos Raaijmakers named 'Highly Cited Researcher' for fifth year running
Clarivate Analytics has published its annual list of highly cited researchers. NIOO-researchers Jos Raaijmakers and Wim van der Putten are included for the fifth year running -
Predicting soil biodiversity to make food production more sustainable
Fields and meadows provide a range of key services, as long as the soil is healthy. A group of researchers and companies will study how farmlands can be returned to multifunctionality. -
Lisette De Senerpont Domis appointed to Smart Ecological Monitoring of Aquatic Systems chair
Lisette de Senerpont Domis is to be appointed professor of Smart Ecological Monitoring of Aquatic Systems at the University of Twente as of 1 May. -
Spreading the word about wild swimming... but safety first!
Swimming in nature is healthy. A group of British researchers have started a project to spread the word. -
Nature in Production: fish ecology at the Marker Wadden (NiPFish)
Natuur in Productie: visecologie op de Marker Wadden (NiPFish) -
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.