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  4. Towards a landscape scale management of pesticides: ERA using changes in modelled occupancy and abundance to assess long-term population impacts of pesticides
 
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2015
Journal Article
Title

Towards a landscape scale management of pesticides: ERA using changes in modelled occupancy and abundance to assess long-term population impacts of pesticides

Abstract
Pesticides are regulated in Europe and this process includes an environmental risk assessment (ERA) for nontarget arthropods (NTA). Traditionally a non-spatial or field trial assessment is used. In this study we exemplify the introduction of a spatial context to the ERA as well as suggest a way in which the results of complex models, necessary for proper inclusion of spatial aspects in the ERA, can be presented and evaluated easily using abundance and occupancy ratios (AOR).We used an agent-based simulation system and an existing model for a widespread carabid beetle (Bembidion lampros), to evaluate the impact of a fictitious highly-toxic pesticide on population density and the distribution of beetles in time and space. Landscape structure and field margin management were evaluated by comparing scenario-based ERAs for the beetle. Source-sink dynamics led to an off-crop impact even when no pesticide was present off-crop. In addition, the impacts increased with multiyear application of the pesticide whereas current ERA considers only maximally one year. These results further indicated a complex interaction between landscape structure and pesticide effect in time, both in-crop and off crop, indicating the need for NTA ERA to be conducted at landscape- and multi-season temporal-scales. Use of AOR indices to compare ERA outputs facilitated easy comparison of scenarios, allowing simultaneous evaluation of impacts and planning of mitigation measures. The landscape and population ERA approach also demonstrates that there is a potential to change from regulation of a pesticide in isolation, towards the consideration of pesticide management at landscape scales and provision of biodiversity benefits via inclusion and testing of mitigation measures in authorisation procedures.
Author(s)
Topping, Chris J.
Department of Bioscience, Århus University - Rønde, Denmark
Craig, Peter S.
Department of Mathematical Sciences, Durham University - Durham, United Kingdom
Jong, Frank de
National Institute for Public Health and the Environment (RIVM) - Bilthoven, The Netherlands
Klein, Michael  
Fraunhofer-Institut für Molekularbiologie und Angewandte Oekologie IME  
Laskowski, Ryszard
Institute of Environmental Sciences, Jagiellonian University - Kraków, Poland
Manachini, Barbara
Department STEBICEF, Palermo University - Palermo, Italy
Pieper, Silvia
German Federal Environment Agency - UBA - Dessau-Roßlau, Germany
Smith, Rob
School of Applied Sciences, University of Huddersfield - Huddersfield, United Kingdom
Sousa, José Paulo
Centre for Functional Ecology, Department of Life Sciences, University of Coimbra - Coimbra, Portugal
Streissl, Franz
European Food Safety Agency - EFSA - Parma, Italy
Swarowsky, Klaus
German Federal Environment Agency - UBA - Dessau-Roßlau, Germany
Tiktak, Aaldrik
PBL Netherlands Environmental Assessment Agency - Bilthoven, The Netherlands
Linden, Ton van der
National Institute for Public Health and the Environment (RIVM) - Bilthoven, The Netherlands
Journal
Science of the Total Environment  
Open Access
DOI
10.1016/j.scitotenv.2015.07.152
Additional link
Full text
Language
English
Fraunhofer-Institut für Molekularbiologie und Angewandte Oekologie IME  
Keyword(s)
  • ALMaSS

  • source-sink dynamics

  • Bembidion lampros

  • environmental risk assessment

  • landscape-scale risk assessment

  • Abundance Occupancy Ratio index

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