globalchange  > 过去全球变化的重建
DOI: 10.1371/journal.pone.0088760
论文题名:
Modeling Tidal Marsh Distribution with Sea-Level Rise: Evaluating the Role of Vegetation, Sediment, and Upland Habitat in Marsh Resiliency
作者: Lisa M. Schile; John C. Callaway; James T. Morris; Diana Stralberg; V. Thomas Parker; Maggi Kelly
刊名: PLOS ONE
ISSN: 1932-6203
出版年: 2014
发表日期: 2014-2-13
卷: 9, 期:2
语种: 英语
英文关键词: Marshes ; Sediment ; Salinity ; Estuaries ; Animal migration ; Fresh water ; Physical geography ; Habitats
英文摘要: Tidal marshes maintain elevation relative to sea level through accumulation of mineral and organic matter, yet this dynamic accumulation feedback mechanism has not been modeled widely in the context of accelerated sea-level rise. Uncertainties exist about tidal marsh resiliency to accelerated sea-level rise, reduced sediment supply, reduced plant productivity under increased inundation, and limited upland habitat for marsh migration. We examined marsh resiliency under these uncertainties using the Marsh Equilibrium Model, a mechanistic, elevation-based soil cohort model, using a rich data set of plant productivity and physical properties from sites across the estuarine salinity gradient. Four tidal marshes were chosen along this gradient: two islands and two with adjacent uplands. Varying century sea-level rise (52, 100, 165, 180 cm) and suspended sediment concentrations (100%, 50%, and 25% of current concentrations), we simulated marsh accretion across vegetated elevations for 100 years, applying the results to high spatial resolution digital elevation models to quantify potential changes in marsh distributions. At low rates of sea-level rise and mid-high sediment concentrations, all marshes maintained vegetated elevations indicative of mid/high marsh habitat. With century sea-level rise at 100 and 165 cm, marshes shifted to low marsh elevations; mid/high marsh elevations were found only in former uplands. At the highest century sea-level rise and lowest sediment concentrations, the island marshes became dominated by mudflat elevations. Under the same sediment concentrations, low salinity brackish marshes containing highly productive vegetation had slower elevation loss compared to more saline sites with lower productivity. A similar trend was documented when comparing against a marsh accretion model that did not model vegetation feedbacks. Elevation predictions using the Marsh Equilibrium Model highlight the importance of including vegetation responses to sea-level rise. These results also emphasize the importance of adjacent uplands for long-term marsh survival and incorporating such areas in conservation planning efforts.
URL: http://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0088760&type=printable
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/17854
Appears in Collections:过去全球变化的重建
影响、适应和脆弱性
科学计划与规划
气候变化与战略
全球变化的国际研究计划
气候减缓与适应
气候变化事实与影响

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作者单位: Smithsonian Environmental Research Center, Edgewater, Maryland, United States of America;Department of Environmental Science, Policy, and Management, University of California, Berkeley, California, United States of America;Department of Environmental Science, University of San Francisco, San Francisco, California, United States of America;Belle Baruch Institute for Marine and Coastal Sciences, University of South Carolina, Columbia, South Carolina, United States of America;Department of Biological Sciences, University of Alberta, Edmonton, Canada;Department of Biology, San Francisco State University, San Francisco, California, United States of America;Department of Environmental Science, Policy, and Management, University of California, Berkeley, California, United States of America

Recommended Citation:
Lisa M. Schile,John C. Callaway,James T. Morris,et al. Modeling Tidal Marsh Distribution with Sea-Level Rise: Evaluating the Role of Vegetation, Sediment, and Upland Habitat in Marsh Resiliency[J]. PLOS ONE,2014-01-01,9(2)
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