How climate change will alter the effects of toxicants is a key concern in the 21st Century. Rising water temperature can increase the toxicity of some contaminants to stream-dwelling animals in laboratory conditions, as has been shown for the most widely used insecticides in the world – the neonicotinoids. But until this study, whether this translates to more realistic environmental scenarios remained to be tested. In this blogpost, Sam Macaulay talks about his mesocosm experiment studying the effects of rising water temperatures and neonicotinoids on stream invertebrate communities.
Continue readingCategory Archives: Research
Food web rewiring drives long-term compositional differences and late-stressor interactions at the community level
In this blogpost, Francesco Polazzo talks about how pesticides can cause a drastic change in the organisation and strength of interactions of aquatic food webs. Particularly, after pesticide exposure, changes in the strength of trophic interactions seem to be driving long-lasting effects in community structure. When multiple pesticides act together, they modify both food web structure and interaction’s strength, causing late-stage non-additive effects between stressors.
Continue reading2 PhD positions in Ecotoxicology at the University of Ghent
The University of Ghent in Belgium is offering 2 paid PhD positions in the field of ecotoxicology.
Continue readingFinding needles in haystacks – Detection of TiO2 nanoparticles in soil
In a recent publication from the Environmental and Soil Chemistry group, we present a method enabling us to detect anthropogenic TiO2 nanoparticles in soil despite the presence of a high natural background. The method relies of colloidal extraction and trace elements ratio using ICP-MS.
Continue readingEmerging midges transport pesticides from aquatic to terrestrial ecosystems
In this blogpost, Alex Roodt talks about how pesticides which are accumulated by emerging aquatic insects during their development can be retained after metamorphosis and may increase the dietary exposure of terrestrial insectivores.
Continue readingMost microplastics in rocky intertidal snails stem from paint
In this blogpost, Sonja Ehlers reports how microplastic loads in rocky intertidal snails from the North Sea, Mediterranean and Atlantic Ocean are consistent across space and time. The majority of the contained microplastics consisted of paint chips that likely derived from ships or maritime equipment. Such paint chips can contain toxic antifouling substances and heavy metals.
Continue readingScience for Ukraine!
The MAGIC team (Meta-Analysis of the Global Impact of Chemicals) at Institute of Environmental Sciences, University of Koblenz – Landau is offering paid research stays and positions for researchers from Ukraine.
Continue readingUpdated article: Insects in nature reserves are contaminated with a cocktail of pesticides
Update 02.03.2022 – Here is a link to a new video of the study on insects contaminated with a mix of pesticides in nature reserves.
In this blog post Carsten Brühl explains the background and findings of their paper on pesticide residues measured on insect samples from nature conservation areas in Germany published in Scientific reports.
Continue readingWhy coffee makes you alert after a heavy lunch: Mixture neurotoxicity explained through the lens of zebrafish behaviour
In this blogpost, Fola Ogungbemi talks about the effects of mixtures of neuroactive substances. Risk assessment of chemicals is usually conducted for individual chemicals whereas mixtures of chemicals occur in the environment. Considering that neuroactive chemicals are a group of contaminants that dominate the environment, it is then imperative to understand the effects of mixtures of neuroactive substances.
Continue readingAntibiotics as a silent driver of climate change?
In this blog post, Eric Bollinger provides a brief overview of their recently published paper regarding the effects of antibiotics on methane production in sediments. The study links topics from ecotoxicology, environmental physics, and molecular ecology in the context of climate change.
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