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Modern saltmarsh diatom distributions of the Outer Banks, North Carolina, and the development of a transfer function for high resolution reconstructions of sea level

机译:北卡罗莱纳州外河岸的现代盐沼硅藻分布,以及为海平面的高分辨率重建而建立的传递函数

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摘要

We collected modern diatom samples from Currituck Barrier Island, Oregon Inlet and Pea Island marshes, Outer Banks, North Carolina, USA, which have different salinity regimes due to their varying distances from a major barrier island inlet. Multivariate analyses separate the saltmarsh diatom assemblages into distinct elevational zones, dominated by differing abundances of polyhalobous, mesohalobous and oligohalobous taxa, suggesting that the distribution of saltmarsh diatoms is a direct function of elevation, with the most important controlling factors being the duration and frequency of subaerial exposure.We developed the first diatom-based transfer function for the east coast of North America to reconstruct former sea levels based upon the relationship between diatom assemblage and elevation. Results imply that this is possible to a precision of ±0.08 m, superior to most similar studies from temperate, mid-latitude environments. The transfer function is used to construct a relative sea-level curve from fossil assemblages from Salvo, North Carolina. These results suggest a sea-level rise of 0.7 m over the last c. 150 years, at an average of c. 3.7 mm year−1. This is consistent with existing sea-level data, and illustrates the utility of the transfer function approach.
机译:我们从美国北卡罗来纳州外滩的Currituck屏障岛,俄勒冈州入口和豌豆岛沼泽收集了现代硅藻样品,这些盐藻由于与主要屏障岛入口的距离不同而具有不同的盐度范围。多变量分析将盐沼硅藻集合体划分为不同的海拔区,以不同程度的多卤,中卤和寡盐类群为主,这表明盐沼硅藻的分布是海拔的直接函数,最重要的控制因素是盐沼的持续时间和频率我们为北美东部海岸开发了第一个基于硅藻的传递函数,以基于硅藻集合与海拔之间的关系来重建以前的海平面。结果表明,这可能具有±0.08 m的精度,优于温带,中纬度环境下的大多数类似研究。传递函数用于根据北卡罗来纳州萨尔沃的化石组合绘制相对海平面曲线。这些结果表明,海平面在最后c时上升了0.7 m。 150年,平均c。 3.7毫米year-1。这与现有海平面数据一致,并说明了传递函数方法的实用性。

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