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首页> 外文期刊>Journal of paleolimnology >Late Holocene thermokarst variability inferred from diatoms in a lake sediment record from the Lena Delta, Siberian Arctic
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Late Holocene thermokarst variability inferred from diatoms in a lake sediment record from the Lena Delta, Siberian Arctic

机译:从西伯利亚北极地区Lena三角洲的湖泊沉积物中的硅藻推断出全新世晚期的热岩溶变化。

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摘要

Thermokarst lakes in the Siberian Arctic contain sediment archives that can be used for paleoenvironmental inference. Until now, however, there has been no study from the inner Lena River Delta with a focus on diatoms. The objective of this study was to investigate how the diatom community in a thermokarst lake responded to past limnogeological changes and what specific factors drove variations in the diatom assemblage. We analysed fossil diatom species, organic content, grain-size distribution and elemental composition in a sediment core retrieved in 2009 from a shallow thermokarst lake in the Arga Complex, western Lena River Delta. The core contains a 3,000-year record of sediment accumulation. Shifts in the predominantly benthic and epiphytic diatom species composition parallel changes in sediment characteristics. Paleoenvironmental and limnogeological development, inferred from multiple biological and sedimentological variables, are discussed in the context of four diatom zones, and indicate a strong relation between changes in the diatom assemblage and thermokarst processes. We conclude that limnogeological and thermokarst processes such as lake drainage, rather than direct climate forcing, were the main factors that altered the aquatic ecosystem by influencing, for example, habitat availability, hydrochemistry, and water level.
机译:西伯利亚北极的喀斯特喀斯特湖包含沉积物档案,可用于古环境推断。但是,到目前为止,内纳河三角洲尚无针对硅藻的研究。这项研究的目的是调查热喀斯特湖中的硅藻群落如何应对过去的地貌地质变化以及哪些特定因素推动了硅藻组合的变化。我们分析了2009年从利纳河三角洲西部Arga Complex的一个浅热岩溶湖中回收的沉积岩芯中的化石硅藻种类,有机物含量,粒度分布和元素组成。核心包含3000年的沉积物记录。底栖硅藻和附生硅藻物种组成的变化与沉积物特征的变化平行。从多个生物学和沉积学变量推断出的古环境和森林地质发展,在四个硅藻区的背景下进行了讨论,并表明了硅藻组合的变化与热岩溶过程之间的密切关系。我们得出的结论是,诸如湖泊排水而不是直接的气候强迫这样的森林地质和热岩溶过程是通过影响栖息地的可利用性,水化学和水位等因素而改变水生生态系统的主要因素。

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