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Managing offshore multi-use settings: Use of conceptual mapping to reduce uncertainty of co-locating seaweed aquaculture and wind farms.
O'Shea, Ryan; Capuzzo, Elisa; Hemming, Victoria; Grebe, Gretchen; Stafford, Rick; van den Burg, Sander W K; Wood, Daniel; Watson, Gordon; Wells, Victoria; Johnson, Teresa; Erbs, Stefan; W van Hal, Jaap; Binnerts, Bas; Collins, Alexandra M; Howe, Caroline.
Afiliación
  • O'Shea R; Department of Chemical Engineering, Imperial College London, South Kensington, London, SW7 2AZ, United Kingdom; Centre for Environmental Policy, Imperial College London, South Kensington, London, SW7 2AZ, United Kingdom. Electronic address: ryan.oshea18@imperial.ac.uk.
  • Capuzzo E; Centre for Environment, Fisheries and Aquaculture Science (CEFAS), Pakefield Rd, Lowesoft, NR 33 0HT, United Kingdom.
  • Hemming V; Department of Forest and Conservation Sciences, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.
  • Grebe G; Marine Biological Laboratory, University of Chicago, 7 Mbl St, Woods Hole, MA, 02543, USA.
  • Stafford R; Department of Life and Environmental Sciences, University of Bournemouth, Fern Barrow, Poole, BH12 5BB, United Kingdom.
  • van den Burg SWK; Wageningen Economic Research, Wageningen University and Research, Droevendaalsesteeg 4, 6708, PB Wageningen, Netherlands.
  • Wood D; Centre for Environment, Fisheries and Aquaculture Science (CEFAS), Pakefield Rd, Lowesoft, NR 33 0HT, United Kingdom.
  • Watson G; School of Biological Sciences, University of Portsmouth, Winston Churchill Ave, Southsea, Portsmouth, PO1 2UP, United Kingdom.
  • Wells V; School for Business and Society, University of York, Church Lane Building, York Science Park, Heslington, York, YO10 5Z, United Kingdom.
  • Johnson T; School of Marine Science, University of Maine, 200 Libby Hall, Orono, ME 04469, USA.
  • Erbs S; UiO:Energy and Environment, University of Oslo, Gaustadalléen 21, 0349 Oslo, Norway.
  • W van Hal J; Netherlands Organisation for Applied Scientific Research (TNO), Westerduinweg 3, 1755 LE Petten, The Netherlands.
  • Binnerts B; Netherlands Organisation for Applied Scientific Research (TNO), Westerduinweg 3, 1755 LE Petten, The Netherlands.
  • Collins AM; Centre for Environmental Policy, Imperial College London, South Kensington, London, SW7 2AZ, United Kingdom.
  • Howe C; Centre for Environmental Policy, Imperial College London, South Kensington, London, SW7 2AZ, United Kingdom.
J Environ Manage ; 358: 120696, 2024 May.
Article en En | MEDLINE | ID: mdl-38614003
ABSTRACT
The offshore Multi-use Setting (MUS) is a concept that aims to co-locate marine industrial activities, including wind farms and aquaculture. MUS is considered an innovative approach to promoting efficiency in space and resource use whilst contributing global policy priorities. However, the impacts of MUS development across social, economic, and environmental domains are uncertain, hindering the commercialisation of the concept. In this study, we initially demonstrate the potential consequences of co-locating seaweed aquaculture and a wind farm as a step towards MUS. Using a hypothetical case study and modified Delphi methodology, 14 subject matter experts predicted potential outcomes across social and environmental objectives. Five Cognitive maps and impact tables of 58 potential consequences were generated based on experts' perspective on co-locating seaweed aquaculture and a wind farm. The findings highlight the potential to exasperate pressures in the area, including those already attributed to wind farm operations, such as species mortality and stakeholder conflict. However, it may also enhance social-ecological conditions, such as resource provisioning and promoting habitat functionality in the region, through the addition of seaweed aquaculture. The cognitive maps demonstrate the complexity of managing MUS implementation, where high degree of variability and uncertainty about the outcomes is present. The findings of this study provide the vital entry point to performing further integrative assessment and modelling approaches, such as probabilistic analysis and simulations, in support of MUS decision-making. The research also strongly recommends alternative strategies in the pursuit of combining seaweed production and wind farms to avoid significant financial (among many other) trade-offs and risks. More broadly, we have found that our approach's ability to visually represent a complex situation while considering multiple objectives could be immensely valuable for other bioeconomy innovations or nature-based solutions. It helps mitigate the potential for expensive investments without a comprehensive evaluation of the associated risks and negative impacts, as necessitated by the principles of sustainability in decision-making.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Algas Marinas / Viento / Acuicultura Idioma: En Revista: J Environ Manage Año: 2024 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Algas Marinas / Viento / Acuicultura Idioma: En Revista: J Environ Manage Año: 2024 Tipo del documento: Article