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Advances in understanding calcite varve formation: new insights from a dual lake monitoring approach in the southern Baltic lowlands

机译:理解方解石变形的进展:来自南部波罗的海低地双湖监测方法的新见解

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摘要

We revise the conceptual model of calcite varves and present, for the first time, a dual lake monitoring study in two alkaline lakes providing new insights into the seasonal sedimentation processes forming these varves. The study lakes, Tiefer See in NE Germany and Czechowskie in N Poland, have distinct morphology and bathymetry, and therefore, they are ideal to decipher local effects on seasonal deposition. The monitoring setup in both lakes is largely identical and includes instrumental observation of (i) meteorological parameters, (ii) chemical profiling of the lake water column including water sampling, and (iii) sediment trapping at both bi-weekly and monthly intervals. We then compare our monitoring data with varve micro-facies in the sediment record. One main finding is that calcite varves form complex laminae triplets rather than simple couplets as commonly thought. Sedimentation of varve sub-layers in both lakes is largely dependent on the lake mixing dynamics and results from the same seasonality, commencing with diatom blooms in spring turning into a pulse of calcite precipitation in summer and terminating with a re-suspension layer in autumn and winter, composed of calcite patches, plant fragments and benthic diatoms. Despite the common seasonal cycle, the share of each of these depositional phases in the total annual sediment yield is different between the lakes. In Lake Tiefer See calcite sedimentation has the highest yields, whereas in Lake Czechowskie, the so far underestimated re-suspension sub-layer dominates the sediment accumulation. Even in undisturbed varved sediments, re-suspended material becomes integrated in the sediment fabric and makes up an important share of calcite varves. Thus, while the biogeochemical lake cycle defines the varves' autochthonous components and micro-facies, the physical setting plays an important role in determining the varve sub-layers' proportion.
机译:我们修改了方解石变化的概念模型,并在两个碱性湖泊中进行了双湖监测研究,为形成这些变化的季节沉降过程提供了新的见解。研究湖泊,领带,在N德国和克兰德尔斯基州的德国和Czechowskie中,具有不同的形态和沐浴,因此,它们是解读对季节性沉积的局部影响。两个湖泊的监测设置在很大程度上是相同的,包括乐器观察(i)气象参数,(ii)湖水柱的化学分析,包括水采样,(iii)沉积物诱捕,双每周和每月间隔。然后,我们将我们的监视数据与沉积物记录中的变化微相进行了测量数据。一个主要发现是光石路石变为复杂的薄层三态,而不是通常思想的简单对联。两个湖泊中变形子层的沉降在很大程度上取决于湖泊混合动力学和来自相同季节性的结果,在春季开始苏格拉地区绽放到夏季的方解石沉淀的脉冲中,并在秋季和秋天的重新悬架层终止冬季,由方解石贴片,植物碎片和底栖硅藻组成。尽管季节性季节性循环,但湖泊之间的每种沉积阶段中的每一个的份额都不同。在Wake Wirefer中,请参阅方解石沉淀物具有最高的收益率,而在南切科斯基湖中,到目前为止低估的重新悬架子层占据了沉积物积累。即使在不受干扰的变形沉积物中,再悬浮材料也集成在沉积物面料中,并构成了方解石变化的重要份额。因此,虽然生物地球化学湖循环定义了变化的自动主体和微观面,但物理设置在确定变化子层的比例方面发挥着重要作用。

著录项

  • 来源
    《Boreas》 |2021年第2期|共22页
  • 作者单位

    IOW Leibniz Inst Balt Sea Res Warnemunde Marine Geol Sect Seestr 15 D-18119 Rostock Germany;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    Polish Acad Sci Dept Environm Resources &

    Geohazards Inst Geog &

    Spatial Org Ul Kopernika 19 PL-87100 Torun Poland;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    Polish Acad Sci Dept Environm Resources &

    Geohazards Inst Geog &

    Spatial Org Ul Kopernika 19 PL-87100 Torun Poland;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    Polish Acad Sci Dept Environm Resources &

    Geohazards Inst Geog &

    Spatial Org Ul Kopernika 19 PL-87100 Torun Poland;

    Polish Acad Sci Dept Environm Resources &

    Geohazards Inst Geog &

    Spatial Org Ul Kopernika 19 PL-87100 Torun Poland;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

    Polish Acad Sci Dept Environm Resources &

    Geohazards Inst Geog &

    Spatial Org Ul Kopernika 19 PL-87100 Torun Poland;

    Polish Acad Sci Dept Environm Resources &

    Geohazards Inst Geog &

    Spatial Org Ul Kopernika 19 PL-87100 Torun Poland;

    GFZ German Res Ctr Geosci Sect Climate Dynam &

    Landscape Evolut 4 3 D-14473 Potsdam Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 历史地质学、地层学;
  • 关键词

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