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hal.structure.identifierSchool of Science and the Environment
dc.contributor.authorPAYNE, Richard J.
hal.structure.identifierSchool of Science and the Environment
dc.contributor.authorDISE, Nancy B.
hal.structure.identifierLancaster Environment Centre
dc.contributor.authorSTEVENS, Carly J.
hal.structure.identifierOpen University
dc.contributor.authorGOWING, David J. G.
hal.structure.identifierEuropean Science Foundation [ESF]
dc.contributor.authorBEGIN PARTNERS, .
hal.structure.identifierUniversity of Bremen
dc.contributor.authorDUPRE, Cecilia
hal.structure.identifierResearch Institute
dc.contributor.authorDORLAND, Edu
hal.structure.identifierBiodiversité, Gènes & Communautés [BioGeCo]
dc.contributor.authorGAUDNIK, Cassandre
hal.structure.identifierEnergy Research Centre of the Netherlands [ECN]
dc.contributor.authorBLEEKER, Albert
hal.structure.identifierUniversity of Bremen
dc.contributor.authorDIEKMANN, Martin
hal.structure.identifierBiodiversité, Gènes & Communautés [BioGeCo]
dc.contributor.authorALARD, Didier
hal.structure.identifierRadboud University [Nijmegen]
dc.contributor.authorBOBBINK, Roland
hal.structure.identifierNatural Environment Research Council [NERC]
dc.contributor.authorFOWLER, David
hal.structure.identifierBiodiversité, Gènes & Communautés [BioGeCo]
dc.contributor.authorCORCKET, Emmanuel
hal.structure.identifierNatural Environment Research Council [NERC]
dc.contributor.authorMOUNTFORD, Owen
hal.structure.identifierUniversity of Bergen [UiB]
dc.contributor.authorVANDVIK, Vigdis
hal.structure.identifierNorwegian Institute for Nature Research [NINA]
dc.contributor.authorAARRESTAD, Per Arild
hal.structure.identifierCentre National de la Recherche Scientifique [CNRS]
dc.contributor.authorMULLER, Serge
dc.date.issued2013
dc.identifier.issn0027-8424
dc.description.abstractEnIn Europe and, increasingly, the rest of the world, the key policy tool for the control of air pollution is the critical load, a level of pollution below which there are no known significant harmful effects on the environment. Critical loads are used to map sensitive regions and habitats, permit individual polluting activities, and frame international negotiations on transboundary air pollution. Despite their fundamental importance in environmental science and policy, there has been no systematic attempt to verify a critical load with field survey data. Here, we use a large dataset of European grasslands along a gradient of nitrogen (N) deposition to show statistically significant declines in the abundance of species from the lowest level of N deposition at which it is possible to identify a change. Approximately 60% of species change points occur at or below the range of the currently established critical load. If this result is found more widely, the underlying principle of no harm in pollution policy may need to be modified to one of informed decisions on how much harm is acceptable. Our results highlight the importance of protecting currently unpolluted areas from new pollution sources, because we cannot rule out ecological impacts from even relatively small increases in reactive N deposition.
dc.language.isoen
dc.publisherNational Academy of Sciences
dc.subject.enplant ecology;Threshold indicator taxon analysis; gradient survey
dc.title.enImpact of nitrogen deposition at the species level
dc.typeArticle de revue
dc.identifier.doi10.1073/pnas.1214299109
dc.subject.halSciences du Vivant [q-bio]
bordeaux.journalProceedings of the National Academy of Sciences of the United States of America
bordeaux.page984-987
bordeaux.volume110
bordeaux.issue3
bordeaux.peerReviewedoui
hal.identifierhal-02646657
hal.version1
hal.popularnon
hal.audienceInternationale
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-02646657v1
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