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Sci Adv2026Article

沉积动力学驱动着全球盐沼脆弱性格局

Sediment dynamics drive global patterns of salt-marsh vulnerability

Hangjie Lin · Sergio Fagherazzi · Cédric G. Fichot

1. 信息

DOI10.1126/sciadv.aee9917

期刊Science Advances / Sci. Adv.

类型Article

发表2026-09-25

卷期页12(39): eaee9917

收录2026-10-10

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关键词salt marshessediment dynamicsrelative sea-level risetidal rangesuspended sediment concentrationblue carboncoastal conservationmarsh restorationextreme eventsanthropogenic pressure

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2. 摘要

Salt marshes protect coastlines, support biodiversity, and store substantial blue carbon, yet their rates of gain and loss vary markedly around the world. Although relative sea-level rise (RSLR) is widely recognized as a major threat, contemporary global patterns of marsh change do not simply track RSLR, suggesting additional controls mediate vulnerability. Here, we combine satellite-derived global salt-marsh change with datasets describing hydro-sedimentary regimes, human pressure, and extreme events to identify the processes underlying this spatial heterogeneity. Tidal range, suspended sediment concentration, and wave–sediment coupling are the strongest first-order predictors of contemporary marsh trajectories, outperforming RSLR in explaining global patterns. These results show that the effects of RSLR are mediated by local sediment availability, delivery, and redistribution. Building on this framework, the Salt Marsh Vulnerability Index identifies coastlines globally where physical conditions favor persistence or increase the risk of marsh degradation, providing a foundation for conservation, restoration, and blue-carbon planning.

3. 图表

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4. 引用

Lin H, Fagherazzi S, Fichot C G. Sediment dynamics drive global patterns of salt-marsh vulnerability[J]. Science Advances, 2026, 12(39): eaee9917. DOI: 10.1126/sciadv.aee9917.
查看 BibTeX
@article{lin2026,
  author = {Hangjie Lin and Sergio Fagherazzi and Cédric G. Fichot},
  title = {Sediment dynamics drive global patterns of salt-marsh vulnerability},
  journal = {Science Advances},
  year = {2026},
  volume = {12},
  number = {39},
  pages = {eaee9917},
  doi = {10.1126/sciadv.aee9917},
  publisher = {American Association for the Advancement of Science (AAAS)},
}

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