Sedimentary Organic Carbon and Nitrogen Sequestration Across a Vertical Gradient on a Temperate Wetland Seascape Including Salt Marshes, Seagrass Meadows and Rhizophytic Macroalgae Beds

被引:0
|
作者
Carmen B. de los Santos
Luis G. Egea
Márcio Martins
Rui Santos
Pere Masqué
Gloria Peralta
Fernando G. Brun
Rocío Jiménez-Ramos
机构
[1] Centre of Marine Sciences of Algarve,Department of Biology
[2] University of Cádiz,School of Science and Centre for Marine Ecosystems Research
[3] Puerto Real,undefined
[4] International Atomic Energy Agency,undefined
[5] Edith Cowan University,undefined
来源
Ecosystems | 2023年 / 26卷
关键词
seascape; blue carbon; seagrass; salt marsh; Cádiz bay; caulerpa;
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学科分类号
摘要
Coastal wetlands are key in regulating coastal carbon and nitrogen dynamics and contribute significantly to climate change mitigation and anthropogenic nutrient reduction. We investigated organic carbon (OC) and total nitrogen (TN) stocks and burial rates at four adjacent vegetated coastal habitats across the seascape elevation gradient of Cádiz Bay (South Spain), including one species of salt marsh, two of seagrasses, and a macroalgae. OC and TN stocks in the upper 1 m sediment layer were higher at the subtidal seagrass Cymodocea nodosa (72.3 Mg OC ha−1, 8.6 Mg TN ha−1) followed by the upper intertidal salt marsh Sporobolus maritimus (66.5 Mg OC ha−1, 5.9 Mg TN ha−1), the subtidal rhizophytic macroalgae Caulerpa prolifera (62.2 Mg OC ha−1, 7.2 Mg TN ha−1), and the lower intertidal seagrass Zostera noltei (52.8 Mg OC ha−1, 5.2 Mg TN ha−1). The sedimentation rates increased from lower to higher elevation, from the intertidal salt marsh (0.24 g cm−2 y−1) to the subtidal macroalgae (0.12 g cm−2 y−1). The organic carbon burial rate was highest at the intertidal salt marsh (91 ± 31 g OC m−2 y−1), followed by the intertidal seagrass, (44 ± 15 g OC m−2 y−1), the subtidal seagrass (39 ± 6 g OC m−2 y−1), and the subtidal macroalgae (28 ± 4 g OC m−2 y−1). Total nitrogen burial rates were similar among the three lower vegetation types, ranging from 5 ± 2 to 3 ± 1 g TN m−2 y−1, and peaked at S. maritimus salt marsh with 7 ± 1 g TN m−2 y−1. The contribution of allochthonous sources to the sedimentary organic matter decreased with elevation, from 72% in C. prolifera to 33% at S. maritimus. Our results highlight the need of using habitat-specific OC and TN stocks and burial rates to improve our ability to predict OC and TN sequestration capacity of vegetated coastal habitats at the seascape level. We also demonstrated that the stocks and burial rates in C. prolifera habitats were within the range of well-accepted blue carbon ecosystems such as seagrass meadows and salt marshes.
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页码:826 / 842
页数:16
相关论文
共 5 条
  • [1] Sedimentary Organic Carbon and Nitrogen Sequestration Across a Vertical Gradient on a Temperate Wetland Seascape Including Salt Marshes, Seagrass Meadows and Rhizophytic Macroalgae Beds
    de los Santos, Carmen B.
    Egea, Luis G.
    Martins, Marcio
    Santos, Rui
    Masque, Pere
    Peralta, Gloria
    Brun, Fernando G.
    Jimenez-Ramos, Rocio
    [J]. ECOSYSTEMS, 2023, 26 (04) : 826 - 842
  • [2] Correction: Sedimentary Organic Carbon and Nitrogen Sequestration Across a Vertical Gradient on a Temperate Wetland Seascape Including Salt Marshes, Seagrass Meadows and Rhizophytic Macroalgae Beds
    Carmen B. de los Santos
    Luis G. Egea
    Márcio Martins
    Rui Santos
    Pere Masqué
    Gloria Peralta
    Fernando G. Brun
    Rocío Jiménez-Ramos
    [J]. Ecosystems, 2023, 26 : 1379 - 1379
  • [3] Sedimentary Organic Carbon and Nitrogen Sequestration Across a Vertical Gradient on a Temperate Wetland Seascape Including Salt Marshes, Seagrass Meadows and Rhizophytic Macroalgae Beds (Mar, year 2023, 0.1007/s10021-023-00832-6)
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    Egea, Luis G.
    Martins, Marcio
    Santos, Rui
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    Brun, Fernando G.
    Jimenez-Ramos, Rocio
    [J]. ECOSYSTEMS, 2023, 26 (06) : 1379 - 1379
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    [J]. JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2022, 322
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    [J]. Journal of Environmental Management, 2022, 322