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Projecting ocean acidification impacts for the Gulf of Maine to 2050

Bibliographic Data

ID19569005
AuthorsSA Siedlecki (University of Connecticut), J Salisbury (0000-0002-5894-6240, University of New Hampshire), DK Gledhill (NOAA Ocean Acidification Program), Carolina Bastidas (0000-0003-1202-749X, MIT Sea Grant), S Meseck, Shannon L Meseck (0000-0003-2062-8789, National Oceanic and Atmospheric Administration), K McGarry (0000-0003-4453-6088, University of Connecticut), CW Hunt (University of New Hampshire), M Alexander (0000-0002-8135-3435, NOAA Physical Sciences Laboratory), Michael A Alexander (0000-0001-9646-6427, NOAA Physical Sciences Laboratory), Diane Lavoie (0009-0000-3738-1909, Fisheries and Oceans Canada), ZA Wang (Woods Hole Oceanographic Institution, Woods Hole, MA, USA), Z A Wang (Woods Hole Oceanographic Institution), J Scott (0000-0001-5185-6261, NOAA Physical Sciences Laboratory), James D Scott (0000-0002-8709-8594, NOAA Physical Sciences Laboratory), DC Brady (University of Maine), Ivy Mlsna (Environmental Protection Agency), K Azetsu-Scott, Kumiko Azetsu‐Scott (Fisheries and Oceans Canada), CM Liberti (University of Maine), DC Melrose, MM White (Mook Sea Farm, Walpole, ME, USA), Meredith M White (0000-0001-8113-9618), Andrew J Pershing (0000-0003-4432-0850, Gulf of Maine Research Institute), A Pershing, Doug Vandemark (0000-0003-4367-5457, University of New Hampshire), DW Townsend (University of Maine), Changsheng Chen (0000-0003-0712-4041, University of Massachusetts Dartmouth), W G Mook, W Mook (Mook Sea Farm, Walpole, ME, USA), Ru Morrison (Northeastern Regional Association of Coastal and Ocean Observing Systems (United States))
Year2021
Volume9
Issue1
Publication date2021-05-13
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueElementa Science of the Anthropocene (JOURNAL)
Journal identifiersISSN: 2325-1026 • E-ISSN: 2325-1026
PublisherUniversity of California Press (PUBLISHER • US)
DOI10.1525/elementa.2020.00062
OpenAlexW3162318454
LanguageEN
Citations received4
References cited112

Ocean acidification (OA) is increasing predictably in the global ocean as rising levels of atmospheric carbon dioxide lead to higher oceanic concentrations of inorganic carbon. The Gulf of Maine (GOM) is a seasonally varying region of confluence for many processes that further affect the carbonate system including freshwater influences and high productivity, particularly near the coast where local processes impart a strong influence. Two main regions within the GOM currently experience carbonate conditions that are suboptimal for many organisms—the nearshore and subsurface deep shelf. OA trends over the past 15 years have been masked in the GOM by recent warming and changes to the regional circulation that locally supply more Gulf Stream waters. The region is home to many commercially important shellfish that are vulnerable to OA conditions, as well as to the human populations whose dependence on shellfish species in the fishery has continued to increase over the past decade. Through a review of the sensitivity of the regional marine ecosystem inhabitants, we identified a critical threshold of 1.5 for the aragonite saturation state (Ωa). A combination of regional high-resolution simulations that include coastal processes were used to project OA conditions for the GOM into 2050. By 2050, the Ωa declines everywhere in the GOM with most pronounced impacts near the coast, in subsurface waters, and associated with freshening. Under the RCP 8.5 projected climate scenario, the entire GOM will experience conditions below the critical Ωa threshold of 1.5 for most of the year by 2050. Despite these declines, the projected warming in the GOM imparts a partial compensatory effect to Ωa by elevating saturation states considerably above what would result from acidification alone and preserving some important fisheries locations, including much of Georges Bank, above the critical threshold

Aragonite · Carbonate · Climate change · Ecosystem · Fishery · Marine ecosystem · Ocean Acidification · Environmental Science · Marine and fisheries research · Marine Biology and Ecology Research · Ocean Acidification Effects and Responses · Ecology · Geology · Oceanography

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Unique citing works4
Citations per year0,8
Citation span2021 - 2022 (2)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 4

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