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Auteur (up) Van Dover, C.L.; Aronson, J.; Pendleton, L.; Smith, S.; ARNAUD-HAOND, S.; Moreno-Mateos, D.; Barbier, E.; Billett, D.; Bowers, K.; Danovaro, R.; Edwards, A.; Kellert, S.; Morato, T.; Pollard, E.; Rogers, A.; Warner, R. url  openurl
  Titre Ecological Restoration in the Deep Sea: Desiderata Type Article scientifique
  Année 2014 Publication Revue Abrégée Marine Policy  
  Volume 44 Numéro Pages 98-106  
  Mots-Clés Cold-water corals; Deep-sea resource use; Hydrothermal vents; Marine policy; Restoration science  
  Résumé An era of expanding deep-ocean industrialization is before us, with policy makers establishing governance frameworks for sustainable management of deep-sea resources while scientists learn more about the ecological structure and functioning of the largest biome on the planet. Missing from discussion of the stewardship of the deep ocean is ecological restoration. If existing activities in the deep sea continue or are expanded and new deep-ocean industries are developed, there is need to consider what is required to minimize or repair resulting damages to the deep-sea environment. In addition, thought should be given as to how any past damage can be rectified. This paper develops the discourse on deep-sea restoration and offers guidance on planning and implementing ecological restoration projects for deep-sea ecosystems that are already, or are at threat of becoming, degraded, damaged or destroyed. Two deep-sea restoration case studies or scenarios are described (deep-sea stony corals on the Darwin Mounds off the west coast of Scotland, deep-sea hydrothermal vents in Manus Basin, Papua New Guinea) and are contrasted with on-going saltmarsh restoration in San Francisco Bay. For these case studies, a set of socio-economic, ecological, and technological decision parameters that might favor (or not) their restoration are examined. Costs for hypothetical restoration scenarios in the deep sea are estimated and first indications suggest they may be two to three orders of magnitude greater per hectare than costs for restoration efforts in shallow-water marine systems.  
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  ISSN 0308-597x ISBN Médium  
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  Notes The following values have no corresponding Zotero field:<br/>Author Address: Duke Univ, Nicholas Sch Environm, Marine Lab, Beaufort, NC 28516 USA.<br/>Author Address: CNRS, Ctr Ecol Fonct & Evolut, UMR 5175, F-34033 Montpellier, France.<br/>Author Address: Duke Univ, Nicholas Inst Environm Policy Solut, Durham, NC 27708 USA.<br/>Author Address: Nautilus Minerals, Milton, Qld, Australia.<br/>Author Address: IFREMER, F-34203 Sete, France.<br/>Author Address: Stanford Univ, Woodside, CA 94062 USA.<br/>Author Address: Dept Econ & Finance, Laramie, WY 82071 USA.<br/>Author Address: Univ Southampton, Natl Oceanog Ctr, Southampton SO14 3ZH, Hants, England.<br/>Author Address: Biohabitats, N Charleston, SC 29405 USA.<br/>Author Address: Polytech Univ Marche, Dept Life & Environm Sci, I-601321 Ancona, Italy.<br/>Author Address: Newcastle Univ, Sch Biol, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England.<br/>Author Address: Yale Univ, Sch Forestry & Environm Studies, New Haven, CT 06511 USA.<br/>Author Address: Univ Acores, Dept Oceanog & Pescas, Ctr IMAR, P-9901862 Horta, Portugal.<br/>Author Address: LARSyS Associated Lab, P-9901862 Horta, Portugal.<br/>Author Address: EURC, Biodivers Consultancy, Cambridge CB2 1RR, England.<br/>Author Address: Dept Zool, Oxford OX1 3PS, England.<br/>Author Address: Univ Wollongong, Australian Natl Ctr Ocean Resources & Secur, North Wollongong, NSW 2522, Australia.<br/>PB – Elsevier Sci Ltd<br/> Approuvé pas de  
  Numéro d'Appel LL @ pixluser @ collection 342  
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