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首页> 外文期刊>Marine Geology >Tracing marine cryptotephras in the North Atlantic during the last glacial period: Protocols for identification, characterisation and evaluating depositional controls
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Tracing marine cryptotephras in the North Atlantic during the last glacial period: Protocols for identification, characterisation and evaluating depositional controls

机译:在最后的冰川期间追踪北大西洋的追踪海洋Cryptotepras:用于识别,表征和评估沉积控制的协议

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摘要

Tephrochronology is increasingly being utilised as a key tool for improving chronological models and correlating disparate palaeoclimatic sequences. For many sedimentary environments, however, there is an increased recognition that a range of processes may impart a delay in deposition and/or rework tephra. These processes can affect the integrity of tephra deposits as time-synchronous markers, therefore, it is crucial to assess their isochronous nature, especially when cryptotephras are investigated in a dynamic marine environment. A methodology for the identification and characterisation of marine cryptotephras alongside a protocol for assessing their integrity is outlined. This methodology was applied to a wide network of North Atlantic marine sequences covering the last glacial period. A diverse range of cryptotephra deposits were identified and, based on similarities in physical characteristics (e.g. glass shard concentration profiles and geochemical homogeneity/heterogeneity), indicative of common modes of tephra delivery and post-depositional reworking, a deposit type classification scheme was defined. The presence and dominance of different deposit types within each core allowed an assessment of spatial and temporal controls on tephra deposition and preservation. Overall, isochronous horizons can be identified across a large portion of the North Atlantic due to preferential atmospheric dispersal patterns. However, the variable influence of ice-rafting processes and an interplay between the high eruptive frequency of Iceland and relatively lower sedimentation rates can also create complex tephrostratigraphies in this sector. Sites within a wide sector to the south and east of Iceland have the greatest potential to be repositories for isochronous horizons that can facilitate the synchronisation of palaeoclimatic records.
机译:Tephrochronologh越来越多地被用作改善时间性模型和关联不同古叶病序列的关键工具。然而,对于许多沉积环境,识别增加了一系列过程可以赋予沉积和/或返工Tephra的延迟。这些过程可以影响Tephra沉积物作为时间同步标记的完整性,因此,评估其同步性质至关重要,尤其是当在动态海洋环境中调查加密艇时。概述了一种用于评估其完整性的课程的识别和表征海洋加密艇的方法。该方法应用于覆盖最后冰川期的北大西洋野生序列的广泛网络。确定了各种各样的Cryptotephra沉积物,并且基于物理特性的相似性(例如玻璃碎屑浓度分布和地球化学均匀性/异质性),指示Tephra递送的常见模式和沉积后再加工,定义了一种沉积型分类方案。各核心内不同沉积物类型的存在和优势允许评估Tephra沉积和保存的空间和时间对照。总的来说,由于优惠的大气分散模式,可以在大部分大部分地区识别同步视野。然而,冰漂流过程的可变影响和冰岛的高喷发频率与相对较低的沉降率之间的相互作用也可以在该领域创造复杂的TephroStraTigraphies。冰岛南部和冰岛以东的广泛扇区内的网站具有最大的潜力,可以介绍同步视野,以便能够促进古希文目录的同步。

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