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DOI | 10.1007/s12237-018-0448-x |
Evaluating the Relationship Among Wetland Vertical Development, Elevation Capital, Sea-Level Rise, and Tidal Marsh Sustainability | |
Cahoon, Donald R.1; Lynch, James C.2; Roman, Charles T.3,4; Schmit, John Paul5; Skidds, Dennis E.6 | |
发表日期 | 2019 |
ISSN | 1559-2723 |
EISSN | 1559-2731 |
卷号 | 42期号:1页码:1-15 |
英文摘要 | Accelerating sea-level rise and human impacts to the coast (e.g., altered sediment supply and hydrology, nutrient loading) influence the accumulation of sediment and organic matter, and thereby impact the ability of coastal tidal wetlands to maintain an elevation consistently within the vegetation growth range. Critical components of marsh sustainability are the marsh elevation within the vegetation growth range (elevation capital) and the rates of marsh surface elevation change and relative sea-level rise. The relationship among these factors and their combined influence on marsh integrity were evaluated by comparing trends in surface elevation change on five salt marsh sites located on three marsh islands in Jamaica Bay, NY, USA. All marsh sites were located in a similar physical setting (i.e., tidal range, sea-level rise rate, sediment supply). The structural integrity of the marshes ranged from densely vegetated (high integrity) to severely deteriorated (low integrity) with elevation capital ranging from high to low, respectively, and included a deteriorating marsh site that was partially restored. Two marshes with high elevation capital maintained their relative position high within the tidal range through a combination of surface sediment deposition and shallow subsurface expansion, and kept pace with local sea-level rise. A marsh with moderate elevation capital showed signs of flooding stress and was deteriorating, but managed to keep pace with local sea-level rise. The deteriorated marsh gained no elevation over the 14-year study and was located too low within the tidal range to support continuous coverage of salt marsh vegetation. Elevation gain in the restored marsh initially lagged behind sea-level rise for 8years, but the elevation trend recovered and kept pace with sea-level rise for the last 5years. A conceptual model is presented that describes the relationship among elevation capital, and rates of marsh elevation gain and sea-level rise. Note that a search for factors influencing wetland loss should focus on process changes to marsh vertical development (e.g., sediment supply, vegetation growth) and climate change effects (e.g., sea-level and temperature rise) that can cause elevation gain to lag behind sea-level rise, and these occur prior to the onset of marsh deterioration. |
WOS研究方向 | Environmental Sciences & Ecology ; Marine & Freshwater Biology |
来源期刊 | ESTUARIES AND COASTS
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文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/89912 |
作者单位 | 1.US Geol Survey, Patuxent Wildlife Res Ctr, Laurel, MD 20708 USA; 2.Natl Pk Serv, Northeast Coastal & Barrier Inventory & Monitorin, 4598 MacArthur Blvd NW, Washington, DC 20007 USA; 3.Univ Rhode Isl, Natl Pk Serv, North Atlantic Coast Cooperat Ecosyst Studies Uni, Narragansett, RI 02882 USA; 4.Univ Rhode Isl, Dept Nat Resources Sci, Kingston, RI 02881 USA; 5.Natl Pk Serv, Natl Capital Reg Inventory & Monitoring Network, 4598 MacArthur Blvd NW, Washington, DC 20007 USA; 6.Univ Rhode Isl, Natl Pk Serv, Northeast Coastal & Barrier Inventory & Monitorin, Kingston, RI 02881 USA |
推荐引用方式 GB/T 7714 | Cahoon, Donald R.,Lynch, James C.,Roman, Charles T.,et al. Evaluating the Relationship Among Wetland Vertical Development, Elevation Capital, Sea-Level Rise, and Tidal Marsh Sustainability[J],2019,42(1):1-15. |
APA | Cahoon, Donald R.,Lynch, James C.,Roman, Charles T.,Schmit, John Paul,&Skidds, Dennis E..(2019).Evaluating the Relationship Among Wetland Vertical Development, Elevation Capital, Sea-Level Rise, and Tidal Marsh Sustainability.ESTUARIES AND COASTS,42(1),1-15. |
MLA | Cahoon, Donald R.,et al."Evaluating the Relationship Among Wetland Vertical Development, Elevation Capital, Sea-Level Rise, and Tidal Marsh Sustainability".ESTUARIES AND COASTS 42.1(2019):1-15. |
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