Influence of sampling strategy, alignment method and growth morphology on the temporal contextualization of high-resolution geochemical data

IF 2.6 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Lukas Fröhlich, Qian Huang, Bernd R. Schöne
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引用次数: 0

Abstract

High-resolution proxy reconstructions of physical and ecological variables in aquatic environments are commonly derived from biogenic archives such as bivalve shells. Interpretation of geochemical data measured in circular-shaped sample spots placed along shell cross-sections requires precise temporal alignment. The latter can be challenging, because differences in growth rate, morphology and sampling methods introduce biases to the reconstructed signals. This study systematically evaluates the impact of different sampling strategies and alignment methods on the reconstruction of environmental signals, i.e., temperature oscillations and phytoplankton blooms. Synthetic environmental signals and digital shell models of the bivalve Arctica islandica were used to numerically simulate how environmental variables are recorded during shell growth. A novel alignment method is presented, demonstrating significantly improved reconstruction accuracy when compared to traditional techniques. The new method enhances the reliability of proxy-based environmental reconstructions using biogenic archives and offers new insights into highly dynamic environmental signals such as phytoplankton blooms.
采样策略、对准方法和生长形态对高分辨率地球化学数据时间背景化的影响
水生环境中物理和生态变量的高分辨率代理重建通常来自双壳类等生物成因档案。在沿壳截面放置的圆形样品点测量的地球化学数据的解释需要精确的时间校准。后者可能具有挑战性,因为生长速率、形态和采样方法的差异会给重构信号带来偏差。本研究系统地评估了不同采样策略和对准方法对温度振荡和浮游植物华度等环境信号重建的影响。利用北极双壳类动物合成环境信号和数字壳模型,对其生长过程中环境变量的记录进行了数值模拟。提出了一种新的对准方法,与传统方法相比,重建精度有了显著提高。新方法提高了基于生物源档案的环境重建的可靠性,并为研究浮游植物华度等高动态环境信号提供了新的见解。
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来源期刊
CiteScore
5.90
自引率
10.00%
发文量
398
审稿时长
3.8 months
期刊介绍: Palaeogeography, Palaeoclimatology, Palaeoecology is an international medium for the publication of high quality and multidisciplinary, original studies and comprehensive reviews in the field of palaeo-environmental geology. The journal aims at bringing together data with global implications from research in the many different disciplines involved in palaeo-environmental investigations. By cutting across the boundaries of established sciences, it provides an interdisciplinary forum where issues of general interest can be discussed.
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