沿海沼泽的气候和植被变化:纽约州皮尔蒙特沼泽 20 年间地下水动态和潮汐洪水的两张快照

IF 1.8 4区 环境科学与生态学 Q3 ECOLOGY
Sofi Courtney, Franco Montalto, Elizabeth Burke Watson
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引用次数: 0

摘要

地下水水文在沿岸沼泽生物地球化学功能中起着重要作用,部分原因是地下水动力学 驱动着大型植物群落的分带分布。随着时间推移而发生的变化,如海平面上升和生境结构的变化,很可能会改变地下水动力学和生态水文分带。皮尔蒙特沼泽是位于纽约市附近哈德逊河口沿岸的一个咸水潮汐沼泽,我们考察了 1999 年和 2019 年的潮汐洪水和沼泽地下水位动态,并绘制了植物分布随时间变化的地图。我们发现有证据表明,与 1999 年相比,2019 年沼泽地表面被淹的频率更高,而且潮汐在 2019 年向沼泽地内传播得更远,尽管沼泽地表面海拔升高的幅度与海平面上升的幅度基本一致。我们观察到的地下水水文变化很可能是由于高潮的上升速度大于平均海平面的上升速度。此外,我们还报告了 P. australis 植物覆盖率的变化,它取代了皮尔蒙特沼泽的原生沼泽植被。虽然 P. australis 的覆盖率有所提高,但与超级风暴桑迪相关的裹挟沉积和植物死亡使得我们的部分重点区域的原生植被得以恢复。这些结果表明,气候变化和植物群落组成可能会相互作用,形成生态水文分区。考虑到这些结果,我们建议栖息地模型在预测海平面上升对沼泽恢复能力的影响时,将潮汐范围扩大和地下水水文作为衡量指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Climate and Vegetation Change in a Coastal Marsh: Two Snapshots of Groundwater Dynamics and Tidal Flooding at Piermont Marsh, NY Spanning 20 Years

Climate and Vegetation Change in a Coastal Marsh: Two Snapshots of Groundwater Dynamics and Tidal Flooding at Piermont Marsh, NY Spanning 20 Years

Groundwater hydrology plays an important role in coastal marsh biogeochemical function, in part because groundwater dynamics drive the zonation of macrophyte community distribution. Changes that occur over time, such as sea level rise and shifts in habitat structure are likely altering groundwater dynamics and eco-hydrological zonation. We examined tidal flooding and marsh water table dynamics in 1999 and 2019 and mapped shifts in plant distributions over time, at Piermont Marsh, a brackish tidal marsh located along the Hudson River Estuary near New York City. We found evidence that the marsh surface was flooded more frequently in 2019 than 1999, and that tides were propagating further into the marsh in 2019, although marsh surface elevation gains were largely matching that of sea level rise. The changes in groundwater hydrology that we observed are likely due to the high tide rising at a rate that is greater than that of mean sea level. In addition, we report changes in plant cover by P. australis, which has displaced native marsh vegetation at Piermont Marsh. Although P. australis has increased in cover, wrack deposition and plant die off associated Superstorm Sandy allowed for native vegetation to rebound in part of our focus area. These results suggest that climate change and plant community composition may interact to shape ecohydrologic zonation. Considering these results, we recommend that habitat models consider tidal range expansion and groundwater hydrology as metrics when predicting the impact of sea level rise on marsh resilience.

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来源期刊
Wetlands
Wetlands 环境科学-环境科学
CiteScore
4.00
自引率
10.00%
发文量
108
审稿时长
4.0 months
期刊介绍: Wetlands is an international journal concerned with all aspects of wetlands biology, ecology, hydrology, water chemistry, soil and sediment characteristics, management, and laws and regulations. The journal is published 6 times per year, with the goal of centralizing the publication of pioneering wetlands work that has otherwise been spread among a myriad of journals. Since wetlands research usually requires an interdisciplinary approach, the journal in not limited to specific disciplines but seeks manuscripts reporting research results from all relevant disciplines. Manuscripts focusing on management topics and regulatory considerations relevant to wetlands are also suitable. Submissions may be in the form of articles or short notes. Timely review articles will also be considered, but the subject and content should be discussed with the Editor-in-Chief (NDSU.wetlands.editor@ndsu.edu) prior to submission. All papers published in Wetlands are reviewed by two qualified peers, an Associate Editor, and the Editor-in-Chief prior to acceptance and publication. All papers must present new information, must be factual and original, and must not have been published elsewhere.
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