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result(s) for
"Naffrechoux, E"
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Looking at biological community level to improve ecotoxicological assessment of freshwater sediments: Report on a First French-Swiss Workshop
by
Perceval, O
,
Lyautey, E
,
Agence française pour la biodiversité
in
Agricultural management
,
Animals
,
Aquatic ecosystems
2018
The first French-Swiss workshop on ecotoxicology of freshwater sediment communities was co-organized by the French Research Institute of Science and Technology for Environment and Agriculture (Irstea) and the Swiss Centre for Applied Ecotoxicology (Ecotox Centre EAWAG-EPFL) in Villié-Morgon (Beaujolais Region, France) on April 27-28, 2017. The workshop brought together scientists working in different fields of expertise (ecotoxicologists, ecologists, environmental chemists...), environmental stakeholder groups and managers, as well as economic players (start-ups and consultancies) to better connect research needs of potential end-users with research outputs. The objectives of this workshop were (i) to establish the state of the art of research in the characterization of sediment contamination and in the evaluation of the effects on sediment-associated biological communities and ecosystem functioning and (ii) to give an overview of the French and Swiss regulations dealing with the assessment of contaminated sediments in freshwater ecosystems. The ultimate goal was to collectively identify research needs and knowledge gaps, as well as to highlight ways to improve the ecotoxicological assessment of sediments in freshwater environments by further considering the structure and functions of associated microbial and invertebrate communities.
Journal Article
Long-term relationships among pesticide applications, mobility, and soil erosion in a vineyard watershed
by
Institute of Geological Sciences [Bern] ; Universität Bern = University of Bern = Université de Berne (UNIBE)
,
Pignol, Cécile
,
Laboratoire des Sciences du Climat et de l'Environnement [Gif-sur-Yvette] (LSCE) ; Université de Versailles Saint-Quentin-en-Yvelines (UVSQ)-Institut national des sciences de l'Univers (INSU - CNRS)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS)-Direction de Recherche Fondamentale (CEA) (DRF (CEA)) ; Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)
in
Agrochemicals
,
Biological Sciences
,
Climate change
2014
Agricultural pesticide use has increased worldwide during the last several decades, but the long-term fate, storage, and transfer dynamics of pesticides in a changing environment are poorly understood. Many pesticides have been progressively banned, but in numerous cases, these molecules are stable and may persist in soils, sediments, and ice. Many studies have addressed the question of their possible remobilization as a result of global change. In this article, we present a retro-observation approach based on lake sediment records to monitor micropollutants and to evaluate the long-term succession and diffuse transfer of herbicides, fungicides, and insecticide treatments in a vineyard catchment in France. The sediment allows for a reliable reconstruction of past pesticide use through time, validated by the historical introduction, use, and banning of these organic and inorganic pesticides in local vineyards. Our results also revealed how changes in these practices affect storage conditions and, consequently, the pesticides' transfer dynamics. For example, the use of postemergence herbicides (glyphosate), which induce an increase in soil erosion, led to a release of a banned remnant pesticide (dichlorodiphenyltrichloroethane, DDT), which had been previously stored in vineyard soil, back into the environment. Management strategies of ecotoxicological risk would be well served by recognition of the diversity of compounds stored in various environmental sinks, such as agriculture soil, and their capability to become sources when environmental conditions change.
Journal Article
Influence of a Consistent Minority on the Responses of a Majority in a Color Perception Task
1969
Most of the studies on social influence have dealt with conformity, social pressure exercized by majority groups, and have used dependency as the source of influence. This study concerns innovation, social pressure exercized by a minority, and tries at the same time to prove that behavioral style is a general source of influence. An objectively blue stimulus is used which two subjects (stooges) out of six call \"green\" in the experimental groups. When the behavior of the minority is consistent, the number of \"green\" replies in the experimental groups is significantly higher than in the control group. This change in answer is not only a verbal agreement but corresponds to a change in their perception code, as shown by a color discrimination test. When the minority's behavior is not consistent, its impact on the majority is minimal. Therefore it is the consistent behavioral style of minorities that insures the adoption of their point of view.
Journal Article