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A global map to aid the identification and screening of critical habitat for marine industries

Author

Listed:
  • Martin, C.S.
  • Tolley, M.J.
  • Farmer, E.
  • Mcowen, C.J.
  • Geffert, J.L.
  • Scharlemann, J.P.W.
  • Thomas, H.L.
  • van Bochove, J.H.
  • Stanwell-Smith, D.
  • Hutton, J.M.
  • Lascelles, B.
  • Pilgrim, J.D.
  • Ekstrom, J.M.M.
  • Tittensor, D.P.

Abstract

Marine industries face a number of risks that necessitate careful analysis prior to making decisions on the siting of operations and facilities. An important emerging regulatory framework on environmental sustainability for business operations is the International Finance Corporation’s Performance Standard 6 (IFC PS6). Within PS6, identification of biodiversity significance is articulated through the concept of “Critical Habitat”, a definition developed by the IFC and detailed through criteria aligned with those that support internationally accepted biodiversity designations. No publicly available tools have been developed in either the marine or terrestrial realm to assess the likelihood of sites or operations being located within PS6-defined Critical Habitat. This paper presents a starting point towards filling this gap in the form of a preliminary global map that classifies more than 13 million km2 of marine and coastal areas of importance for biodiversity (protected areas, Key Biodiversity Areas [KBA], sea turtle nesting sites, cold- and warm-water corals, seamounts, seagrass beds, mangroves, saltmarshes, hydrothermal vents and cold seeps) based on their overlap with Critical Habitat criteria, as defined by IFC. In total, 5798×103km2 (1.6%) of the analysis area (global ocean plus coastal land strip) were classed as Likely Critical Habitat, and 7526×103km2 (2.1%) as Potential Critical Habitat; the remainder (96.3%) were Unclassified. The latter was primarily due to the paucity of biodiversity data in marine areas beyond national jurisdiction and/or in deep waters, and the comparatively fewer protected areas and KBAs in these regions. Globally, protected areas constituted 65.9% of the combined Likely and Potential Critical Habitat extent, and KBAs 29.3%, not accounting for the overlap between these two features. Relative Critical Habitat extent in Exclusive Economic Zones varied dramatically between countries. This work is likely to be of particular use for industries operating in the marine and coastal realms as an early screening aid prior to in situ Critical Habitat assessment; to financial institutions making investment decisions; and to those wishing to implement good practice policies relevant to biodiversity management. Supplementary material (available online) includes other global datasets considered, documentation and justification of biodiversity feature classification, detail of IFC PS6 criteria/scenarios, and coverage calculations.

Suggested Citation

  • Martin, C.S. & Tolley, M.J. & Farmer, E. & Mcowen, C.J. & Geffert, J.L. & Scharlemann, J.P.W. & Thomas, H.L. & van Bochove, J.H. & Stanwell-Smith, D. & Hutton, J.M. & Lascelles, B. & Pilgrim, J.D. & E, 2015. "A global map to aid the identification and screening of critical habitat for marine industries," Marine Policy, Elsevier, vol. 53(C), pages 45-53.
  • Handle: RePEc:eee:marpol:v:53:y:2015:i:c:p:45-53
    DOI: 10.1016/j.marpol.2014.11.007
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    References listed on IDEAS

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    1. Kareiva, Peter & Tallis, Heather & Ricketts, Taylor H. & Daily, Gretchen C. & Polasky, Stephen (ed.), 2011. "Natural Capital: Theory and Practice of Mapping Ecosystem Services," OUP Catalogue, Oxford University Press, number 9780199589005.
    2. Dunn, Daniel C. & Ardron, Jeff & Bax, Nicholas & Bernal, Patricio & Cleary, Jesse & Cresswell, Ian & Donnelly, Ben & Dunstan, Piers & Gjerde, Kristina & Johnson, David & Kaschner, Kristin & Lascelles,, 2014. "The Convention on Biological Diversity's Ecologically or Biologically Significant Areas: Origins, development, and current status," Marine Policy, Elsevier, vol. 49(C), pages 137-145.
    3. Derek P. Tittensor, 2012. "Scorecard for the seas," Nature, Nature, vol. 488(7413), pages 594-595, August.
    4. Derek P. Tittensor & Camilo Mora & Walter Jetz & Heike K. Lotze & Daniel Ricard & Edward Vanden Berghe & Boris Worm, 2010. "Global patterns and predictors of marine biodiversity across taxa," Nature, Nature, vol. 466(7310), pages 1098-1101, August.
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    1. Kerstin M Brauneder & Chloe Montes & Simon Blyth & Leon Bennun & Stuart H M Butchart & Michael Hoffmann & Neil D Burgess & Annabelle Cuttelod & Matt I Jones & Val Kapos & John Pilgrim & Melissa J Toll, 2018. "Global screening for Critical Habitat in the terrestrial realm," PLOS ONE, Public Library of Science, vol. 13(3), pages 1-16, March.

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