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Artificial reef footprint in the United States ocean

  • Avery B. Paxton,
  • D’amy N. Steward,
  • Keith J. Mille,
  • Jeffrey Renchen,
  • Zachary H. Harrison,
  • Jordan S. Byrum,
  • Cameron Brinton,
  • Alicia Nelson,
  • Ethan Simpson,
  • Peter J. Clarke,
  • Christopher LaPorta,
  • Patrick D. Barrett,
  • Mark Rousseau,
  • D. Craig Newton,
  • Russell B. Rigby,
  • D. Travis Williams,
  • J. Brooke Shipley,
  • Paul Murakawa,
  • Brendan J. Runde,
  • Kenneth L. Riley,
  • Nathan M. Bacheler,
  • G. Todd Kellison,
  • J. Christopher Taylor

摘要

Marine ecosystem declines have spurred global efforts to restore degraded habitats, manage marine life and enhance recreation opportunities by installing built structures called artificial reefs in seascapes. Evidence suggests that artificial reefs generate ecosystem services and risks, yet a fundamental ecological characteristic—the area of seafloor occupied by these constructed reefs—remains poorly quantified. Here we calculate the physical footprint (seafloor extent) of artificial reefs in the US ocean using spatial data from all 17 US coastal states with ocean reefing programmes. Our synthesis revealed that purposely sunk reef structures such as ships and concrete pipes occupy 19.23 km2 of the ocean through 2020. Over the past five decades (1970–2020), the intentional reef footprint increased 20.85-fold (~1,980%), but this rate of increase slowed in the past decade (2010–2020) to 1.12-fold (~12%). These baseline findings will inform sustainable use of built marine infrastructure and generation of ecological functions.