Resolving Uncertainties in Foraminifera-Based Relative Sea-Level Reconstruction: a Case Study from Southern New Zealand

IF 0.7 4区 地球科学 Q4 PALEONTOLOGY Journal of Foraminiferal Research Pub Date : 2023-01-20 DOI:10.2113/gsjfr.53.1.78
E. Garrett, M. Brain, B. Hayward, R. Newnham, Craig J. Morey, W. Gehrels
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Abstract

Since the pioneering work of David Scott and others in the 1970s and 1980s, foraminifera have been used to develop precise sea-level reconstructions from salt marshes around the world. In New Zealand, reconstructions feature rapid rates of sea-level rise during the early to mid-20th century. Here, we test whether infaunality, taphonomy, and sediment compaction influence these reconstructions. We find that surface (0–1 cm) and subsurface (3–4 cm) foraminiferal assemblages show a high degree of similarity. A landward shift in assemblage zones is consistent with recent sea-level rise and transgression. Changes associated with infaunality and taphonomy do not affect transfer function-based sea-level reconstructions. Applying a geotechnical modelling approach to the core from which sea-level changes were reconstructed, we demonstrate compaction is also negligible, resulting in maximum post-depositional lowering of 2.5 mm. We conclude that salt-marsh foraminifera are indeed highly accurate and precise indicators of past sea levels.
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解决基于有孔虫的相对海平面重建的不确定性:以新西兰南部为例
自20世纪70年代和80年代David Scott等人的开创性工作以来,有孔虫一直被用于从世界各地的盐沼中进行精确的海平面重建。在新西兰,重建的特点是20世纪初至中期海平面快速上升。在这里,我们测试不知名度、埋藏和沉积物压实是否会影响这些重建。我们发现表面(0–1厘米)和地下(3–4厘米)有孔虫组合显示出高度相似性。组合带向陆地的移动与最近的海平面上升和海侵相一致。与出生率和出生率相关的变化不会影响基于传递函数的海平面重建。将岩土工程建模方法应用于重建海平面变化的岩芯,我们证明压实也可以忽略不计,导致沉积后最大下降2.5毫米。我们得出结论,盐沼有孔虫确实是过去海平面的高度准确和精确的指标。
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来源期刊
Journal of Foraminiferal Research
Journal of Foraminiferal Research 地学-古生物学
CiteScore
2.10
自引率
9.10%
发文量
32
审稿时长
>12 weeks
期刊介绍: JFR publishes original papers of international interest dealing with the Foraminifera and allied groups of organisms. Review articles are encouraged.
期刊最新文献
2023 Cushman Foundation for Foraminiferal Research Award and Grant Recipients The Later Holocene Foraminifera of Liverpool Bay (Bae Lerpwl), British Isles: Morphospecies and Community Level Patterns Micro- to Macro-Scale Foraminiferal Distributions: The Contributions of Martin A. Buzas* Oceanic-Scale Species Diversity of Living Benthic Foraminifera: Insights into Neogene Diversity, Community Structure, Species Duration, and Biogeography Benthic Foraminiferal Response to the Aptian−Albian Carbon Cycle Perturbation in the Atlantic Ocean
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