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Article Reference Enabling Renewable Energy While Protecting Wildlife: An Ecological Risk-Based Approach to Wind Energy Development Using Ecosystem-Based Management Values
Acceptance of wind energy development is challenged by stakeholders’ concerns about potential effects on the environment, specifically on wildlife, such as birds, bats, and (for offshore wind) marine animals, and the habitats that support them. Communities near wind energy developments are also concerned with social and economic impacts, as well as impacts on aesthetics, historical sites, and recreation and tourism. Lack of a systematic, widely accepted, and balanced approach for measuring the potential damage to wildlife, habitats, and communities continues to leave wind developers, regulators, and other stakeholders in an uncertain position. This paper explores ecological risk-based management (RBM) in wind energy development for land-based and offshore wind installations. This paper provides a framework for the adaptation of ecosystem-based management to wind energy development and examines that framework through a series of case studies and best management practices for applying risk-based principles to wind energy. Ten case studies indicate that wind farm monitoring is often driven by regulatory requirements that may not be underpinned by scientific questions. While each case applies principles of adaptive management, there is room for improvement in applying scientific principles to the data collection and analysis. Challenges and constraints for wind farm development to meet RBM framework criteria include collecting sufficient baseline and monitoring data year-round, engaging stakeholder facilitators, and bringing together large and diverse scientific teams. The RBM framework approach may provide insights for improved siting and consenting/permitting processes for regulators and their advisors, particularly in those nations where wind energy is still in the early development stages on land or at sea.
Located in Library / RBINS Staff Publications 2020
Article Reference Twenty years for Zootaxa and ten years for Afromoths (Lepidoptera): a taxonomic interaction between the journal and an online relational database
Located in Library / RBINS Staff Publications 2021
Article Reference Subspecific rodent taxa as the relevant host taxonomic level for mammarenavirus host specificity
Located in Library / RBINS Staff Publications 2023 OA
Article Reference SARS-CoV-2 Infection in Captive Hippos (Hippopotamus amphibius), Belgium
Located in Library / RBINS Staff Publications 2023 OA
Article Reference The cicada genus Megapomponia Boulard, 2005 from Laos, with description of a new species (Hemiptera: Cicadidae)
Located in Library / RBINS Staff Publications 2020
Article Reference Fluvial activity of the Lateglacial to Holocene "Bergstraßenneckar" in the Upper Rhine Graben near Heidelberg, Germany – first results.
Located in Library / RBINS Staff Publications 2022
Article Reference Virus influenza aviaire hautement pathogène H5N8: particularités et implication pour la surveillance en Belgique.
Located in Library / No RBINS Staff publications
Article Reference Differential Viral Fitness Between H1N1 and H3N8 Avian Influenza Viruses Isolated from Mallards (Anas platyrhynchos).
Located in Library / No RBINS Staff publications
Article Reference . Impact of Age, Season, and Flowing vs. Stagnant Water Habitat on Avian Influenza Prevalence in Mute Swan (Cygnus olor) in Belgium.
Located in Library / No RBINS Staff publications
Article Reference Delineating large-scale migratory connectivity of reed warblers using integrated multistate models.
Located in Library / No RBINS Staff publications