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Controls on Surface and Downcore Sedimentary Organic Matter in a Constructed Oyster Reef

Author

Listed:
  • Melissa Southwell

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA)

  • Jessica Veenstra

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA)

  • Christopher Blanco

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA
    Center for Marine Science, University of North Carolina, Wilmington, NC 28409, USA)

  • SavannahLynne Bowen

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA
    Department of Public Works, Titusville, FL 32780, USA)

  • Taryn Chaya

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA
    Whitney Marine Lab for Marine Bioscience, University of Florida, St. Augustine, FL 32080, USA)

  • Tyler Cooper-Kolb

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA
    College of Earth, Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, OR 97331, USA)

  • Pamela Marcum

    (Guana Tolomato Matanzas National Estuarine Research Reserve, Ponte Vedra Beach, FL 32082, USA
    South Carolina Department of Natural Resources, Charleston, SC 29412, USA)

  • Patricia McCaul

    (Department of Natural Sciences, Flagler College, St. Augustine, FL 32084, USA)

Abstract

Oysters provide a suite of important ecosystem services, and recent research shows that oyster restoration rapidly enhances sedimentary organic carbon deposition. In 2012, an oyster reef enhancement project began in the GTM National Estuarine Research Reserve in Northeast FL, USA. We analyzed the spatial and downcore variability in sedimentary organic matter (OM) and particle sizes in the intertidal zone between the reefs and the marsh, along with oyster reef characteristics, to better understand physical and/or biological influences on sediment. Our data indicate that OM in the top 20 cm of sediment cores was negatively correlated with reef age. Similar decreases in particles <63 μm suggest remobilization of sediment, likely driven by the degradation of the reef structure over its approximately 9-year lifetime. Likewise, a survey of surface sediments showed that adjacent reef structural metrics were the best predictor of sediment OM and particle size. These results highlight the importance of reef structure as a control on sedimentary organic carbon deposition and stability in areas where physical energy is relatively high. This result is discussed in the context of implications for carbon budgets and biogeochemical ecosystem services of oysters as a part of living shorelines.

Suggested Citation

  • Melissa Southwell & Jessica Veenstra & Christopher Blanco & SavannahLynne Bowen & Taryn Chaya & Tyler Cooper-Kolb & Pamela Marcum & Patricia McCaul, 2023. "Controls on Surface and Downcore Sedimentary Organic Matter in a Constructed Oyster Reef," Sustainability, MDPI, vol. 15(16), pages 1-13, August.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:16:p:12584-:d:1220516
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